PaperPanorama

HEP Phenomenology·hep-ph

Tue·Oct 23, 2018

46 papers—35 primary·11 cross-listed·reconstructed*

  1. 01*

    Higgs Boson Contributions to the Electron Electric Dipole Moment

    Daniel Egana-Ugrinovic🇺🇸 · Scott Thomas🇺🇸

    The contributions of a second Higgs doublet to the electron electric dipole moment near the heavy Higgs decoupling limit are determined within an effective field theory framework. In models that satisfy the Glashow-Weinberg condition, the leading contributions in this limit at effective dimension six are shown to come from two-loop Barr-Zee diagrams that include the Standard Model-like Higgs boson. Additional diagrams that include heavy Higgs bosons are sub-leading and contribute only at effective dimension eight near the decoupling limit. This simplification implies that to leading order in this limit, contributions of a second Higgs doublet to the electron electric dipole moment can be couched entirely in terms of the ratio of Higgs doublet expectation values and a single universal phase appearing in the effective couplings of the Standard Model-like Higgs boson to fermions, without direct reference to the heavy Higgs boson masses or couplings. The recent bound from the ACME II experiment constrains the phases of the couplings of the Standard Model-like Higgs boson to up-type quarks and leptons at the part per mil level in Type I and IV two Higgs doublet models. In Type II and III models these phases are constrained at the two parts per mil or better level except in a tiny sliver of parameter space with nearly equal Higgs doublet expectation values where destructive interference among contributing diagrams happens to occur. In a more general phenomenological parameterization with individual effective phases in the couplings of the Standard Model-like Higgs boson to third generation fermions and the electron, the top quark and electron coupling phases are constrained at the part per mil level except in tiny slivers of parameter space, while the bottom quark and tau-lepton coupling phases are constrained only at the thirty percent level.

    hep-ph34 citations
  2. 02*

    Polarized hyperon production in single-inclusive electron-positron annihilation at next-to-leading order

    Leonard Gamberg🇺🇸 · Zhong-Bo Kang🇺🇸 · Daniel Pitonyak🇺🇸 · Marc Schlegel🇺🇸 · Shinsuke Yoshida🇺🇸

    We study the production of polarized -hyperons in electron-positron annihilation. We are particularly interested in the transverse-spin dependence of the cross section for unpolarized incident electron-positron pairs. At high energies this process may be described in the collinear twist-3 framework, where the hadronization transition of partons into a transversely polarized -hyperon can be written in terms of collinear twist-3 fragmentation matrix elements. We calculate the hard partonic cross sections and interference terms in perturbative QCD to next-to-leading order accuracy. We find that the QCD equation of motion plays a crucial role in our analysis. As a byproduct, assuming the validity of QCD factorization for twist-3 observables at next-to-leading order, we derive the evolution equation for the relevant twist-3 fragmentation matrix element.

    hep-phhep-exJHEP(2019)·37 citations
  3. 03*

    The next-to-leading order corrections to transition in the factorization

    Jun Hua🇨🇳 · Ya-Lan Zhang🇨🇳 · Zhen-Jun Xiao🇨🇳

    In this paper, we investigate the factorization hypothesis step by step for the exclusive process at next-to-leading order (NLO) with the collinear factorization approach, and then we extend our results to the factorization frame. We show that the soft divergence from the specific NLO diagrams will cancel each other at the quark level, while the remaining collinear divergence can be absorbed into the NLO wave functions. The full NLO amplitudes can be factorized into two parts: the NLO and meson wave functions containing the collinear divergence and the leading order (LO) finite hard kernels. We give the general form of the nonlocal hadron matrix for the NLO and meson wave functions and all results of factorization for different twists' combinations.

    hep-phhep-exPRD(2019)·3 citations
  4. 04*

    Using QCD Counting rules to Identify the Production of Gluonium

    Stanley J. Brodsky🇺🇸 · Felipe J. Llanes-Estrada🇪🇸

    The empirical identification of bound states of gluons has remained a central goal of hadron spectroscopy. We suggest an experimentally challenging, but model--independent way to assess which zero charge, isospin-zero mesons have a large gluonium light-front wavefunction component in the quark and gluon Fock space of QCD. Our method exploits QCD counting rules which relate the power-law fall-off of production amplitudes at high momentum transfer to the meson's twist (dimension minus spin of its minimum interpolating operators). Scalar glueballs composed of two valence gluons with zero internal orbital angular momentum have twist . In contrast, quark-antiquark scalar mesons have twist since they have nonzero orbital angular momentum, and multi-quark states such as tetraquarks yield twist . Thus, the production cross section for both and mesons will be suppressed by at least one power of momentum transfer relative to glueball production. For example, in single inclusive particle hadroproduction , the cross section for glueball production at high transverse momentum and fixed will dominate higher twist mesons by at least two powers of . Similarly, in exclusive production processes at large CM energy and fixed CM angle, the glueball rate dominates by a power of : we illustrate the method with a simple reaction, where the can be tested to be a glueball versus another type of scalar meson.

    hep-phPLB(2019)·7 citations
  5. 05*

    Loop induced singlet scalar production through the vector like top quark at future lepton colliders

    Daruosh Haji Raissi🇮🇷 · Seddigheh Tizchang🇮🇷 · Mojtaba Mohammadi Najafabadi🇮🇷

    In this paper, we explore the signature of a simplified model which includes a new singlet scalar state and a vector like quark at future lepton colliders. In particular, we study the production of the new singlet scalar in association with a photon, which proceeds through loop level diagrams involving vector like top quark partner, at future colliders with different center-of-mass energies from 500 GeV to 3 TeV. To show the sensitivity of the process, the exclusion limits on the parameter space of the model are presented considering the decay of the singlet scalar into a pair of Higgs boson, followed by the decay of Higgs bosons into pairs. The results are compared to those obtained from the LHC, electroweak precision data and other channels at lepton colliders and it is shown that a notable sensitivity to the parameter space of the simplified model could be achieved.

    hep-phJ.Phys.G(2020)·3 citations
  6. 06*

    Bounds on ortho-positronium and - quarkonia invisible decays and constraints on hidden braneworlds in a -broken 5D bulk

    Michael Sarrazin🇫🇷 · Coraline Stasser🇧🇪

    While our visible Universe could be a 3-brane, some cosmological scenarios consider that other 3-branes could be hidden in the extra-dimensional bulk. Matter disappearance toward a hidden brane is mainly discussed for neutron - both theoretically and experimentally - but other particles are poorly studied. Recent experimental results offer new constraints on positronium or quarkonium invisible decays. In the present work, we show how a two-brane Universe allows for such invisible decays. We put this result in the context of the recent experimental data to constrain the brane energy scale (or effective brane thickness ) and the interbrane distance for a relevant two-brane Universe in a -broken 5D bulk. Quarkonia present poor bounds compared to results deduced from previous passing-through-walls-neutron experiments for which scenarios with GeV and fm are excluded. By contrast, positronium experiments can compete with neutron experiments depending on the matter content of each brane. To constrain scenarios up to the Planck scale, positronium experiments in vacuum cavity should be able to reach .

    hep-phhep-exnucl-exInt.J.Mod.Phys.A(2020)·1 citation
  7. 07*

    Probing Scalar and Pseudoscalar Solutions of the g-2 Anomaly

    Fayez Abu-Ajamieh🇺🇸

    I investigate a class of models with scalar and pseudoscalar solutions to the g-2 anomaly in the mass range between 1 MeV and 40 GeV. In particular, I investigate the constraints from BaBar, beam dump experiments and from Z decay measured quantities. I find that most of the favored region in this mass range is excluded except for a small window between ~30 MeV and 200 MeV. This open window is expected to be covered by the proposed NA64 experiment. The results can be readily applied to other proposed solutions of the anomaly, such as solutions with Z0 or with the dark photon.

    hep-phAdv.High Energy Phys.(2020)·9 citations
  8. 08*

    Vacuum energy and trace anomaly

    Taekoon Lee🇰🇷

    Concerning the trace anomaly in field theory a nonvanishing vacuum energy breaks the scale symmetry as well, in addition to the usual beta function dependent term, requiring a unit operator in the trace anomaly. This additional term is also necessary in quantum chromodynamics (QCD) to cancel the inherent ambiguity in the gluon condensate. The inseparability of the gluon condensate effect from the perturbative contribution to the vacuum energy renders it impossible to isolate the gluon condensate effect on the cosmological constant.

    hep-phhep-th0 citations
  9. 09*

    Discovery of the Odderon by TOTEM experiments and the FMO approach

    E. Martynov🇺🇦 · B. Nicolescu🇷🇴

    This paper is an extended version of the talk by B. Nicolescu at the XLVIII International Symposium on Multiparticle Dynamics (ISMD2018) at Singapore, 3-7 September, 2018. Theoretical basis and history of the Froissaron and Maximal Odderon (FMO) approach for elastic and scattering is presented. Precise formulation of the FMO model at any momentum transfer squared is given. The model is applied to description and analysis of the experimental data in a wide interval of energy and . The special attention is given for the latest TOTEM data at 13 TeV, both at and at and to their interpretation in the FMO model. It is emphasized that the last TOTEM results can be considered as clear evidence for the first experimental observation of the Odderon, predicted theoretically about 50 years ago.

    hep-phhep-exEPJ Web Conf.(2019)·8 citations
  10. 10*

    The asymptotic behavior of the heavy quark form factors at higher order

    J. Blümlein🇩🇪 · P. Marquard🇩🇪 · N. Rana🇩🇪

    In the asymptotic limit , the heavy quark form factors exhibit Sudakov behavior. We study the corresponding renormalization group equations of the heavy quark form factors which do not only govern the structure of infrared divergences, but also control the high energy logarithms. This enables us to obtain the complete logarithmic three--loop and partial four--loop contributions to the heavy quark form factors in perturbative Quantum Chromodynamics.

    hep-phhep-thPRD(2019)·27 citations
  11. 11*

    Prospects of searching for composite resonances at the LHC and beyond

    Da Liu🇺🇸 · Lian-Tao Wang🇺🇸 · Ke-Pan Xie🇰🇷

    Composite Higgs models predict the existence of resonances. We study in detail the collider phenomenology of both the vector and fermionic resonances, including the possibility of both of them being light and within the reach of the LHC. We present current constraints from di-boson, di-lepton resonance searches and top partner pair searches on a set of simplified benchmark models based on the minimal coset , and make projections for the reach of the HL-LHC. We find that the cascade decay channels for the vector resonances into top partners, or vice versa, can play an important role in the phenomenology of the models. We present a conservative estimate for their reach by using the same-sign di-lepton final states. As a simple extrapolation of our work, we also present the projected reach at the 27 TeV HE-LHC and a 100 TeV collider.

    hep-phJHEP(2019)·40 citations
  12. 12*

    production via vector-boson fusion in Georgi-Machacek model at hadron colliders

    Qiang Yang🇨🇳 · Ren-You Zhang🇨🇳 · Wen-Gan Ma🇨🇳 · Yi Jiang🇨🇳 · Xiao-Zhou Li🇨🇳 · Hao Sun🇨🇳

    The Georgi-Machacek (GM) model is a distinctive TeV-scale extension of the Standard Model (SM) due to the introduction of two (one real and one complex) scalar triplets to the Higgs sector. It predicts the existence of doubly charged Higgs bosons and the vacuum expectation value of Higgs triplets can reach a few tens of GeV. In this paper, we perform a parameter scan of the GM model within the H5plane benchmark scenario and investigate in detail the single production of a doubly charged Higgs boson in association with a SM-like Higgs boson via vector-boson fusion at the LHC and Super Proton-Proton Collider. Both integrated cross section and differential distributions with respect to some kinematic variables for are provided up to the QCD next-to-leading order. In the signal-background analysis we employ the {\sc madspin} method to take into account the spin correlation and finite width effects of the intermediate Higgs and bosons and present some kinematic distributions of final leptons. The numerical results show that the SM background can be suppressed remarkably and the vector-boson fusion signal can be directly detected at future high-luminosity, high-energy hadron colliders by imposing a proper cut on the transverse mass .

    hep-phPRD(2018)·6 citations
  13. 13*

    Fat Jet Signature of a Heavy Neutrino at Lepton Collider

    Sabyasachi Chakraborty🇺🇸 · Manimala Mitra🇮🇳 · Sujay Shil🇮🇳

    We explore the discovery prospect of a very heavy neutrino at the proposed collider for two different c.m.energies TeV and 3 TeV. We consider production of heavy neutrino via and -channel processes, and its subsequent prompt decays leading to semi-leptonic final states, along with significant missing energy. For our choice of masses, the gauge boson produced from heavy neutrino decay is highly boosted, leading to a fat-jet. We carry out a detail signal and background analysis for final state using both cut based and multivariate techniques. We show that a heavy neutrino of mass GeV and active-sterile mixing can be probed with significance at collider after collecting of data. We find the sensitivity reach at collider is order of magnitude enhanced as compared to LHC.

    hep-phPRD(2019)·42 citations
  14. 14*

    The remaining parts for the long-standing J/psi polarization puzzle

    Yu Feng🇨🇳 · Bin Gong🇨🇳 · Chao-Hsi Chang🇨🇳 · Jian-Xiong Wang🇨🇳

    Based on the non-relativistic quantum chromodynamics factorization formalism, the polarization parameters and of hadroproduction are analyzed in helicity frame and calculated at QCD next-to-leading order for the first time. For prompt production, we take into account the feeddown contributions from and decays. The theoretical predictions for the polarization parameters and of are presented. With the theoretical results we have done the fit to the experimental measurements on yield and polarization for hadroproduction simultaneously, and found that the results are coincide with the experimental measurements at the LHC quite well.

    hep-phPRD(2019)·39 citations
  15. 15*

    Feynman rules for quadrilinear gauge boson couplings in noncommutative standard model

    Seyed Shams Sajadi🇮🇷 · G.R. Boroun🇮🇷

    We examine the electroweak gauge sector of noncommutative standard model and in particular, obtain the Feynman rules for all quadrilinear gauge boson couplings. Surprisingly, an electroweak-chromodynamics mixing appears in the gauge sector of noncommutative standard model, where photon as well as the neutral weak boson are coupled directly to three gluons. The phenomenological perspectives of the model in scattering are studied and it is shown that there is a characteristic oscillatory behaviour in azimuthal distribution of scattering cross sections which can be interpreted as a direct signal of noncommutative standard model. Assuming the integrated luminosity 100 , the number of subprocesses are estimated for some values of noncommutative scale at different center of mass energies and the results are compared with predictions of the standard model.

    hep-phhep-thPRD(2017)·1 citation
  16. 16*

    Another Look at Flavor

    W. W. Buck🇺🇸 · Stinson Lee🇺🇸

    A new suggestion for organizing the charged pseudo scalar mesons is presented. The simple Non-relativistic (NR) potential model employs a single value of the light quark mass and determines the potential coupling constant directly from the charged pseudo scalar mesons, pion and kaon, experimental charge radii values. All other constituent quark masses are directly dependent on the light quark mass value. The model compares features of the traditional approaches to the NR quark model as well as that of a Relativistic quark model. We explore the possibility of introducing flavor as a dynamic quantum number.

    hep-ph0 citations
  17. 17*

    Wigner distributions and GTMDs in a proton using light-front quark-diquark model

    Satvir Kaur🇮🇳 · Harleen Dahiya🇮🇳

    We investigate the Wigner distributions and generalized transverse momentum-dependent distributions (GTMDs) for and quarks in the proton by using light-front quark-diquark model. We consider the contribution of scalar and axial-vector diquark having spin-0 and spin-1 respectively. We take different polarization configurations of quark and proton to calculate the Wigner distributions. The Wigner distributions are studied in the impact-parameter space, momentum space and mixed space for and quarks in the proton. We also study the relation of GTMDs with longitudinal momentum fraction carried by the active quark for different values of (skewness) which is defined as the longitudinal momentum transferred to the proton. Further, we study the GTMDs in the relation with for zero skewness at different values of quark transverse momentum as well as at different values of total momentum transferred to the proton .

    hep-phNPB(2018)·13 citations
  18. 18*

    Particle decay from statistical thermal model in high energy nucleus-nucleus collision

    Ning Yu🇨🇳 · Xiaofeng Luo🇨🇳

    In high energy nucleus-nucleus collisions, it is difficult to measure the contributions of resonance strong decay and weak decay to the final measured hadrons as well as the corresponding effects on some physical observables. To provide a reference from statistical thermal model, we performed a systematic analysis for the energy dependence of particle yield and yield ratios in Au + Au collisions. We found that the primary fraction of final hadrons decreases with increasing collision energy and somehow saturates around = 10 GeV, indicating a limiting temperature in hadronic interactions. The fraction of strong or weak decay for final hadrons show a different energy dependence behavior comparing to the primarily produced hadrons. These energy dependences of various particle yield and yield ratios from strong or weak decay can provide us with baselines for many hadronic observables in high energy nucleus-nucleus collisions.

    hep-phEPJA(2019)·14 citations
  19. 19*

    A Guidebook to Hunting Charged Higgs Bosons at the LHC

    Abdesslam Arhrib🇲🇦 · Rachid Benbrik🇲🇦 · Hicham Harouiz🇲🇦 · Stefano Moretti🇬🇧 · Abdessamad Rouchad🇲🇦

    We perform a comprehensive global analysis in the Minimal Supersymmetric Standard Model (MSSM) as well as in the 2-Higgs Doublet Model (2HDM) of the production and decay mechanisms of charged Higgs bosons at the Large Hadron Collider (LHC). Starting from the most recent experimental results (SM-like Higgs boson signal strengths and search limits for new Higgs boson states obtained at Run-1 and -2 of the LHC and previous colliders), from (both direct and indirect) searches for Supersymmetric particles as well as from flavor observables (from both factories and hadron colliders) and upon enforcing theoretical constraints (vacuum stability, perturbativity, unitarity), we present precise predictions for cross sections and decay rates in different reference scenarios of the two aforementioned models in terms of the parameter space currently available, specifically mapped over the customary planes, including singling out specific Benchmark Points (BPs) amenable to phenomenological investigation. These include the and hMSSM configurations of the MSSM and the 2HDM Type-I, -II, -X and -Y. Such BPs are always close to (or coinciding with) the best fits of the theoretical scenarios to experimental data. We also briefly discuss the ensuing phenomenology for the purpose of aiding future searches for such charged Higgs boson states.

    hep-phFront.in Phys.(2020)·25 citations
  20. 20*

    Magnetized QCD phase diagram: net-baryon susceptibilities

    Márcio Ferreira🇵🇹 · Pedro Costa🇵🇹 · Constança Providência🇵🇹

    Employing the Polyakov extended Nambu-Jona-Lasinio model, we determine the net-baryon number fluctuations of magnetized three-flavor quark matter. We show that the magnetic field changes the nature of the strange quark transition from crossover to first-order at low temperatures. In fact, the strange quark undergoes multiple first-order phase transitions and several critical end points emerge in the phase diagram.

    hep-phActa Phys.Polon.Supp.(2018)·0 citations
  21. 21*

    Current Status of Natural NMSSM in Light of LHC 13TeV Data and XENON-1T Results

    Junjie Cao🇨🇳 · Yangle He🇨🇳 · Liangliang Shang🇨🇳 · Yang Zhang🇦🇺 · Pengxuan Zhu🇨🇳

    In the natural realization of the Next-to-minimal Supersymmetric Standard Model, Higgsinos tend to be lighter than about several hundred GeVs, which can induce detectable leptonic signals at the LHC as well as large DM-nucleon scattering cross section. We explore the constraints from the direct searches for electroweakino and slepton at the LHC Run II and the latest DM direct detection experiments on the scenario with low fine tuning indicator . We find that these experiments are complementary to each other in excluding the scenario, and as far as each kind of experiment is concerned, it is strong enough to exclude a large portion of the parameter space. As a result, the scenario with Bino- or Higgsino-dominated DM is disfavored, and that with Singlino-dominated DM is tightly limited. There are two regions in natural NMSSM parameter space surviving in the current experimental limits. One is featured with a decoupled Singlino-dominated LSP with , which cannot be explored by neither DM detections or collider searches. The other parameter space region is featured by and the correlation , which will be explored by near future DM detection experiments.

    hep-phPRD(2019)·49 citations
  22. 22*

    Long-lived triplinos and displaced lepton signals at the LHC

    Asli Sabanci Keceli🇫🇮 · Priyotosh Bandyopadhyay🇮🇳 · Katri Huitu🇫🇮

    We explore the possibility of having superpartners of triplet Higgs bosons, named as 'triplinos'. They form a part of light neutralinos and charginos in a extended supersymmetric Standard Model. For this model such electroweakinos do not have direct couplings to the Standard Model fermions. On top of that, due to very compressed spectrum for lighter neutralinos and charginos, their decay products coming from three body decays are very soft and thus can evade the current collider bounds. These decays are particularly interesting since they give rise to displaced leptonic signatures. We categorise the parameter space, while exploring different displaced decay possibilities. A PYTHIA based simulation has been performed to find out the displaced charged lepton, jet and -jet final states at the LHC with center of mass energy of 14 TeV.

    hep-phEPJC(2019)·7 citations
  23. 23*

    and in asymmetric hot magnetized nuclear matter

    Rajesh Kumar🇮🇳 · Arvind Kumar🇮🇳

    We investigate the mass-shift of vector channel and pseudoscalar channel in strongly magnetized asymmetric nuclear medium at finite temperature using the conjunction of chiral model with the QCD sum rules. The magnetic field dependence of scalar gluon condensate as well as the twist-2 gluon condensate calculated from chiral SU() model, are implemented in QCD sum rules to calculate the magnetic field dependence of and meson masses. The effects of constant external magnetic field at finite density and temperature of the medium are found to be appreciable in symmetric and asymmetric nuclear matter. The results of the present investigation may be helpful to understand the experimental observables arising from the Compressed Baryonic Matter (CBM) produced in asymmetric non-central heavy ion collision experiments.

    hep-phEPJC(2019)·27 citations
  24. 24*

    Pion electromagnetic form factor at high precision with implications to and the onset of perturbative QCD

    B. Ananthanarayan🇮🇳 · Irinel Caprini🇷🇴 · Diganta Das🇮🇳

    We extend recently developed methods used for determining the electromagnetic charge radius and to obtain a determination of the electromagnetic form factor of the pion, , in several significant kinematical regions, using a parametrization-free formalism based on analyticity and unitarity, and with the inclusion of precise inputs from both timelike and spacelike regions. On the unitarity cut, below the first inelastic threshold we use the precisely known phase of the form factor, known from elastic scattering via the Fermi-Watson theorem, and above the inelastic threshold a conservative integral condition on the modulus. We also use as input the experimental values of the modulus at several energies in the elastic region, where the data from and hadronic decays are mutually consistent, as well as the most recent measurements at spacelike momenta. The experimental uncertainties are implemented by Monte Carlo simulations. At spacelike values near the origin, our predictions are consistent and significantly more precise than the recent QCD lattice calculations. The determinations at larger confirm the late onset of perturbative QCD for exclusive quantities. From the predictions of on the timelike axis below 0.63 GeV, we obtain the hadronic vacuum polarization (HPV) contribution to the muon anomaly, , using input from both annihilation and decay, and using only input. Our determinations can be readily extended to obtain such contributions in any interval of interest lying between and 0.63 GeV.

    hep-phPRD(2018)·41 citations
  25. 25*

    Matching renormalisable couplings: simple schemes and a plot

    Johannes Braathen🇫🇷 · Mark D. Goodsell🇫🇷 · Pietro Slavich🇫🇷

    We discuss different choices that can be made when matching a general high-energy theory -- with the restriction that it should not contain heavy gauge bosons -- onto a general renormalisable effective field theory at one loop, with particular attention to the quartic scalar couplings and Yukawa couplings. This includes a generalisation of the counterterm scheme that was found to be useful in the case of high-scale/split supersymmetry, but we show the important differences when there are new heavy scalar fields in singlet or triplet representations of . We also analytically compare our methods and choices with the approach of matching pole masses, proving the equivalence with one of our choices. We outline how to make the extraction of quartic couplings using pole masses more efficient, an approach that we hope will generalise beyond one loop. We give examples of the impact of different scheme choices in a toy model; we also discuss the MSSM and give the threshold corrections to the Higgs quartic coupling in Dirac gaugino models.

    hep-phEPJC(2019)·21 citations
  26. 26*

    A proposal on complementary determination of the electro-weak mixing angles at a super Z-factory

    Xu-Chang Zheng🇨🇳 · Chao-Hsi Chang🇨🇳 · Tai-Fu Feng🇨🇳

    A proposal on determination of the effective electro-weak mixing angle at a super Z-factory (an collider designed with the possible highest luminosity and running around the center mass energy ) is proposed. It is to determine how the effective mixing angles depend on the flavors, especially the flavors , (with the determined effective ones, the electro-weak mixing angles of Standard Model can be derived out precisely). The key point of the proposal is that at such a super Z-factory, via measuring the forward-backward (), left-right () and combined left-right forward-backward () asymmetries of the produced doubly heavy-flavored hadrons (such as , and the baryons : , and etc) in the relevant production processes and one may complement the final determination of the mixing angle of Standard Model. The advantage of the proposed way to determine the effective electro-weak mixing angles is that the doubly heavy flavor(s) and the out-going direction of the produced doubly-heavy hadron can be experimental determined precisely, i.e. there are no such errors caused by missing identification of the heavy flavor(s) and by determining the so-called thrust axis of the produced jets, which can not be avoided in the early determination at LEP-I and SLC.

    hep-phSCPMA(2020)·8 citations
  27. 27*

    Searching for New Long Lived Particles in Heavy Ion Collisions at the LHC

    Marco Drewes🇧🇪 · Andrea Giammanco🇧🇪 · Jan Hajer🇧🇪 · Michele Lucente🇧🇪 · Olivier Mattelaer🇧🇪

    We show that heavy ion collisions at the LHC provide a promising environment to search for new long lived particles in well-motivated New Physics scenarios. One advantage lies in the possibility to operate the main detectors with looser triggers, which can increase the number of observable events by orders of magnitude if the long lived particles are produced with low transverse momentum. In addition, the absence of pileup in heavy ion collisions can avoid systematic nuisances that will be present in future proton runs, such as the problem of vertex mis-identification. Finally, there are new production mechanisms that are absent or inefficient in proton collisions. We show that the looser triggers alone can make searches in heavy ion data competitive with proton data for the specific example of heavy neutrinos in the Neutrino Minimal Standard Model, produced in the decay of B mesons. Our results suggest that collisions of ions lighter than lead, which are currently under discussion in the heavy ion community, are well-motivated from the viewpoint of searches for New Physics.

    hep-phhep-exPRL(2020)·17 citations
  28. 28*

    EFT approach to the electron Electric Dipole Moment at the two-loop level

    Giuliano Panico🇩🇪 · Alex Pomarol🇪🇸 · Marc Riembau🇨🇭

    The ACME collaboration has recently reported a new bound on the electric dipole moment (EDM) of the electron, at 90 confidence level, reaching an unprecedented accuracy level. This can translate into new relevant constraints on theories beyond the SM laying at the TeV scale, even when they contribute to the electron EDM at the two-loop level. We use the EFT approach to classify these corrections, presenting the contributions to the anomalous dimension of the CP-violating dipole operators of the electron up to the two-loop level. Selection rules based on helicity and CP play an important role to simplify this analysis. We use this result to provide new bounds on BSM with leptoquarks, extra Higgs, or constraints in sectors of the MSSM and composite Higgs models. The new ACME bound pushes natural theories significantly more into fine-tune territory, unless they have a way to accidentally preserve CP.

    hep-phJHEP(2019)·144 citations
  29. 29*

    A Method to Determine at the Weak Scale in Top Decays at the LHC

    P. F. Harrison🇬🇧 · V. E. Vladimirov🇬🇧

    Until now, the Cabibbo Kobayashi Maskawa matrix element, , has always been measured in decays, i.e.~at an energy scale , far below the weak scale. We consider here the possibility of measuring it close to the weak scale, at , in top decays at the Large Hadron Collider (LHC). Our proposed method would use data from the LHC experiments in hadronic top decays , tagged by the semileptonic decay of the associated top. We estimate the uncertainty of such a measurement, as a function of present and potential future experimental jet flavour-tagging performances, and conclude that first measurements using the data collected during 2016 - 2018 could yield a fractional error on \Vcb\ of order 7\% per experiment. We also give projected performances at higher luminosities, which could yield sensitivity to any Standard Model running of \Vcb\ below the weak scale, if present.

    hep-phhep-exJHEP(2019)·14 citations
  30. 30*

    Ultraheavy resonances at the LHC: beyond the QCD background

    Bogdan A. Dobrescu🇺🇸 · Robert M. Harris🇺🇸 · Joshua Isaacson🇺🇸

    We study the theory and some experimental hints of ultraheavy resonances at the LHC. The production of an ultraheavy narrow particle may have a larger rate than the QCD background even when the final state includes only hadronic jets. We consider two classes of models that lead to 4-jet signals. In the first class a diquark scalar decays into two vectorlike quarks. In the second one a coloron decays into two color-octet scalars or into a pair of vectorlike quarks. We show that a diquark as heavy as 11.5 TeV, or a coloron as heavy as 8.5 TeV may be discovered at the LHC. We point out that a CMS 4-jet event may be due to an 8 TeV resonance decaying into two secondary particles, each with a mass of 1.8 TeV. We find that the QCD background with a 4-jet mass and dijet masses that equal or exceed those of the CMS event is approximately events in 78 fb of data, while the diquark signal could have easily produced that event. The diquark also decays directly into two jets, which may be the origin of some of the three other events of mass near 8 TeV observed by ATLAS and CMS.

    hep-phhep-ex24 citations
  31. 31*

    Type-II Seesaw Scalar Triplet Model at a 100 TeV Collider: Discovery and Higgs Portal Coupling Determination

    Yong Du🇺🇸 · Aaron Dunbrack🇺🇸 · Michael J. Ramsey-Musolf🇺🇸 · Jiang-Hao Yu🇨🇳

    We investigate the collider phenomenology of the scalar triplet particles in the Type-II seesaw model at a 100 TeV collider. Depending on triplet vacuum expectation value , the dominant discovery channels could be and . We find the channels are promising for both model discovery at relatively large and determination of the Higgs portal couplings and . We also find that these two channels are complementary to indirect determination of from future precise measurements on decay rate. Together with pair production of the doubly-charged Higgs subsequently decaying into same-sign di-leptons, the channels have the potential to cover a significant portion of the parameter space of the Type-II seesaw complex scalar triplet model.

    hep-phJHEP(2019)·76 citations
  32. 32*

    New Axion Searches at Flavor Factories

    Xabier Cid Vidal🇪🇸 · Alberto Mariotti🇧🇪 · Diego Redigolo🇮🇱 · Filippo Sala🇩🇪 · Kohsaku Tobioka🇺🇸

    We assess the impact of searches at flavor factories for new neutral resonances that couple to both photons and gluons. These are well motivated by "heavy axion" solutions of the strong CP problem and by frameworks addressing both Dark Matter and the Higgs hierarchy problem. We use LHCb public diphoton data around the Bs mass to derive the current best limit on these resonances for masses between 4.9 and 6.3 GeV. We estimate that a future LHCb dedicated search would test an axion decay constant of O(TeV) for axion masses in the few-to-tens of GeV, being fully complementary to the low mass ATLAS and CMS searches. We also derive the impact of BABAR searches based on Upsilon decays and the future Belle-II reach.

    hep-phhep-exJHEP(2019)·107 citations
  33. 33*

    Precision Predictions at NLO for the Higgs Boson Rapidity Distribution at the LHC

    Falko Dulat🇺🇸 · Bernhard Mistlberger🇺🇸 · Andrea Pelloni🇨🇭

    We present precise predictions for the Higgs boson rapidity distribution at the LHC in the gluon fusion production mode. Our approach relies on the fully analytic computation of six terms in a systematic expansion of the partonic differential cross section around the production threshold of the Higgs boson at next-to-next-to-next-to leading order (NLO) in QCD perturbation theory. We observe a mild correction compared to the previous perturbative order and a significant reduction of the dependence of the cross section on the perturbative scale throughout the entire rapidity range.

    hep-phhep-exPRD(2019)·110 citations
  34. 34*

    Twin Turtles

    Pouya Asadi🇺🇸 · Nathaniel Craig🇺🇸 · Ying-Ying Li🇨🇳

    We present an ultraviolet extension of the Twin Higgs in which the radial mode of twin symmetry breaking is itself a pseudo-goldstone boson. This "turtle" structure raises the scale of new colored particles in exchange for additional states in the Higgs sector, making multiple Higgs-like scalars the definitive signature of naturalness in this context. We explore the parametrics and phenomenology of a concrete Twin Turtle model and demonstrate its robustness in two different supersymmetric completions. Along the way, we also introduce a new mechanism for inducing hard twin symmetry-breaking quartics via soft supersymmetry breaking.

    hep-phJHEP(2019)·14 citations
  35. 35*

    Mixed WIMP-axion dark matter

    Suman Chatterjee🇮🇳 · Anirban Das (TIFR, Mumbai)🇮🇳 · Tousik Samui (HRI, Allahabad)🇮🇳 · Manibrata Sen (UC Berkeley, Northwestern Univ.)🇺🇸

    We study the experimental constraints on a model of a two-component dark matter, consisting of the QCD axion, and a scalar particle, both contributing to the dark matter relic abundance of the Universe. The global Peccei-Quinn symmetry of the theory can be spontaneously broken down to a residual symmetry, thereby identifying this scalar as a stable weakly interacting massive particle, i.e., a dark matter candidate, in addition to the axion. We perform a comprehensive study of the model using the latest data from dark matter direct and indirect detection experiments, as well as new physics searches at the Large Hadron Collider. We find that although the model is mostly constrained by the dark matter detection experiments, it is still viable around a small region of the parameter space where the scalar dark matter is half as heavy as the Standard Model Higgs. In this allowed region, the bounds from these experiments are evaded due to a cancellation mechanism in the dark matter--Higgs coupling. The collider search results, however, are shown to impose weak bounds on the model.

    hep-phastro-ph.COPRD(2019)·10 citations
  36. 36*

    Runaway Quintessence, Out of the Swampland

    Yessenia Olguin-Trejo🇲🇽 · Susha L. Parameswaran🇬🇧 · Gianmassimo Tasinato🇬🇧 · Ivonne Zavala🇬🇧

    We propose a simple, well-motivated and robust alternative to a metastable de Sitter vacuum in string theory, consistent with current observations of dark energy and naturally satisfying conjectured swampland constraints. Inflation ends in a supersymmetric Minkowski minimum, with a flat direction that is protected by non-renormalisation theorems. At some scale non-perturbative effects kick in, inducing a runaway scalar potential. The tail of this runaway potential cannot sustain a late-time dominating, slow-roll quintessence. However, the potential always contains a dS maximum. If the modulus starts close to the hilltop, it remains frozen there by Hubble friction for much of the cosmological history, at first sourcing a tiny classical vacuum energy and then constituting a rolling quintessence, with observable consequences. So long as the modulus is localised away from the Standard Model in the extra dimensions, there are no observable fifth forces nor is there time-variation of fundamental constants, and the modulus mass is protected from radiative corrections. We revisit concrete string models based on heterotic orbifold compactifications, and show that their de Sitter extrema satisfy the recently refined dS Swampland Conjecture.

    ↳ hep-thastro-ph.COgr-qchep-phJCAP(2019)·88 citations
  37. 37*

    Tensor non-Gaussianities from Non-minimal Coupling to the Inflaton

    Emanuela Dimastrogiovanni🇺🇸 · Matteo Fasiello🇬🇧 · Gianmassimo Tasinato🇬🇧 · David Wands🇬🇧

    Tensor non-Gaussianity represents an important future probe of the physics of inflation. Inspired by recent works, we elaborate further on the possibility of significant primordial tensor non-Gaussianities sourced by extra fields during inflation. Unitarity constraints limit the impact of extra (spinning) particle content by means of a lower bound on the corresponding mass spectrum. For spin-2 particles, this takes the form of the well-known Higuchi bound. Massive () particles will typically decay during inflation unless they are non-minimally coupled to the inflaton sector: the inflating field "lifts" the dynamics of the extra field(s), effectively getting around the limits imposed by unitarity. There exist several models that realize such a mechanism, but we focus here on the set-up of [1] where, through an EFT approach, one is able to capture the essential features common to an entire class of theories. In the presence of an extra massive spin-2 particle, the interactions in the tensor sector mimic very closely those in the scalar sector of quasi-single-field inflationary models. We calculate the tensor bispectrum in different configurations and extract its dependence on the extra tensor sound speed. We show in detail how one may obtain significant tensor non-Gaussianities whose shape-function interpolates between local and equilateral, depending on the mass of the extra field. We also estimate the LISA response functions to a tensor bispectrum supporting the intermediate-type shapes we find.

    ↳ astro-ph.COgr-qchep-phhep-thJCAP(2019)·33 citations
  38. 38*

    Electroweak properties of pions in a nuclear medium

    Parada T. P. Hutauruk🇰🇷 · Yongseok Oh🇰🇷 · K. Tsushima🇧🇷

    The charge form factor and weak decay constant of the pion as well as the pion-quark coupling constant in symmetric nuclear matter are explored in the framework of the Nambu--Jona-Lasinio model, where the pion is described as a bound state of dressed quark-antiquark pair obtained by the Bethe-Salpeter equation. For the in-medium current quark properties, we adopt the quark-meson coupling model, which describes successfully many hadron properties in a nuclear medium. The pion decay constant and the pion-quark coupling constant are found to decrease with increasing density as well as the magnitude of the light quark condensate. But the pion mass is found to be insensitive to density up to times the normal nuclear density. The pion charge form factor in the space-like region is also explored and is found to have a similar dependence as the form factor in vacuum showing -behavior in large region, where is the negative of the four-momentum transfer squared. The modifications of the charge radius of the charged pion in nuclear matter are then estimated and the root-mean-square radius at the normal nuclear density is predicted to be larger than that in vacuum by about 20\%.

    ↳ nucl-thhep-phnucl-exPRC(2019)·30 citations
  39. 39*

    Effect of giant resonances on fluctuations of electromagnetic fields in heavy ion collisions

    B.G. Zakharov🇷🇺

    We perform quantum calculations of fluctuations of the electromagnetic fields in collisions at RHIC and LHC energies. Calculations are performed with the help of the fluctuation-dissipation theorem accounting for the giant dipole and quadrupole resonances. We find that in the quantum picture the field fluctuations are much smaller than that predicted by the classical Monte-Carlo simulation with the Woods-Saxon nuclear density used in previous analyses.

    ↳ nucl-thhep-phJETP Lett.(2018)·2 citations
  40. 40*

    Precision Higgs Physics at CEPC

    Fenfen An · Yu Bai · Chunhui Chen · Xin Chen · Zhenxing Chen · Joao Guimaraes da Costa · Zhenwei Cui · Yaquan Fang · Chengdong Fu · Jun Gao · Yanyan Gao · Yuanning Gao and 59 other authors

    The discovery of the Higgs boson with its mass around 125 GeV by the ATLAS and CMS Collaborations marked the beginning of a new era in high energy physics. The Higgs boson will be the subject of extensive studies of the ongoing LHC program. At the same time, lepton collider based Higgs factories have been proposed as a possible next step beyond the LHC, with its main goal to precisely measure the properties of the Higgs boson and probe potential new physics associated with the Higgs boson. The Circular Electron Positron Collider~(CEPC) is one of such proposed Higgs factories. The CEPC is an circular collider proposed by and to be hosted in China. Located in a tunnel of approximately 100~km in circumference, it will operate at a center-of-mass energy of 240~GeV as the Higgs factory. In this paper, we present the first estimates on the precision of the Higgs boson property measurements achievable at the CEPC and discuss implications of these measurements.

    ↳ hep-exhep-phCPC(2019)·183 citations
  41. 41*

    Chiral transition via the Banks-Casher relation

    Gergely Endrodi🇩🇪 · Lukas Gonglach🇩🇪

    We investigate the properties of the finite-temperature QCD transition towards the chiral limit using staggered quarks. Starting from the 2+1-flavor physical point, the limit of massless quarks is approached along two different trajectories in the Columbia-plot. Unlike in previous approaches, the chiral condensate is determined via the Banks-Casher relation. The first results of our finite size scaling analysis are presented.

    ↳ hep-lathep-phPoS(2018)·6 citations
  42. 42*

    Axion Structure Formation I: The Co-motion Picture

    Erik W. Lentz🇩🇪 · Thomas R. Quinn🇺🇸 · Leslie J Rosenberg🇺🇸

    Axions as dark matter is an increasingly important subject in astrophysics and cosmology. Experimental and observational searches are mounting across the mass spectrum of axion-like particles, many of which require detailed knowledge of axion structure over a wide range of scales. Current understanding of axion structures is far from complete, however, due largely to controversy in modeling the candidate's highly-degenerate state. The series Axion Structure Formation seeks to develop a consistent model of QCD axion dark matter dynamics that follows their highly-degenerate nature to the present using novel modeling techniques and sophisticated simulations. This inaugural paper presents the problem of describing many non-relativistic axions with minimal degrees of freedom and constructs a theory of axion infall for the limit of complete condensation. The derived model is shown to contain axion-specific dynamics not unlike the exchange-correlation influences experienced by identical fermions. Perturbative calculations are performed to explore the potential for imprints in early universe structures.

    ↳ astro-ph.COastro-ph.GAhep-phMNRAS(2019)·20 citations
  43. 43*

    Bayesian analysis of the hardening in AMS-02 nuclei spectra

    Jia-Shu Niu🇨🇳 · Tianjun Li🇨🇳 · Hui-Fang Xue🇨🇳

    Based on the precise nuclei data released by AMS-02, we study the spectra hardening of both the primary (proton, helium, carbon, oxygen, and the primary component of nitrogen) and the secondary (anti-proton, lithium, beryllium, boron and the secondary component of nitrogen) cosmic ray (CR) nuclei. With the diffusion-reacceleration model, we consider two schemes to reproduce the hardening in the spectra: (i) A high-rigidity break in primary source injection; (ii) A high-rigidity break in diffusion coefficient. The global fitting results show that both schemes could reproduce the spectra hardening in current status. More precise multi-TV data (especially the data of secondary CR species) is needed if one wants to distinguish these two schemes. In our global fitting, each of the nuclei species is allocated an independent solar modulation potential and a re-scale factor (which accounts for the isotopic abundance for primary nuclei species and uncertainties of production cross section or inhomogeneity of CR sources and propagation for secondary nuclei species). The fitting values of these two parameter classes show us some hints on some new directions in CR physics. All the fitted re-scale factors of primary nuclei species have values that systematically smaller than 1.0, while that of secondary nuclei species are systematically larger than 1.0. Moreover, both the re-scale factor and solar modulation potential of beryllium have values which are obviously different from other species. This might indicate that beryllium has the specificity not only on its propagation in the heliosphere, but also on its production cross section. All these new results should be seriously studied in the future.

    ↳ astro-ph.HEhep-phApJ(2019)·15 citations
  44. 44*

    LHC Dark Matter Working Group: Next-generation spin-0 dark matter models

    Tomohiro Abe🇯🇵 · Yoav Afik🇮🇱 · Andreas Albert🇩🇪 · Christopher R. Anelli🇨🇦 · Liron Barak🇮🇱 · Martin Bauer🇬🇧 · J. Katharina Behr🇩🇪 · Nicole F. Bell🇦🇺 · Antonio Boveia🇺🇸 · Oleg Brandt🇩🇪 · Giorgio Busoni🇦🇺 · Linda M. Carpenter🇺🇸 and 41 other authors

    Dark matter (DM) simplified models are by now commonly used by the ATLAS and CMS Collaborations to interpret searches for missing transverse energy (). The coherent use of these models sharpened the LHC DM search program, especially in the presentation of its results and their comparison to DM direct-detection (DD) and indirect-detection (ID) experiments. However, the community has been aware of the limitations of the DM simplified models, in particular the lack of theoretical consistency of some of them and their restricted phenomenology leading to the relevance of only a small subset of signatures. This document from the LHC Dark Matter Working Group identifies an example of a next-generation DM model, called , that provides the simplest theoretically consistent extension of the DM pseudoscalar simplified model. A comprehensive study of the phenomenology of the model is presented, including a discussion of the rich and intricate pattern of mono- signatures and the relevance of other DM as well as non-DM experiments. Based on our discussions, a set of recommended scans are proposed to explore the parameter space of the model through LHC searches. The exclusion limits obtained from the proposed scans can be consistently compared to the constraints on the model that derive from DD, ID and the DM relic density.

    ↳ hep-exhep-phPhys.Dark Univ.(2020)·208 citations
  45. 45*

    Enhanced n-body annihilation of dark matter and its indirect signatures

    Mohammad Hossein Namjoo🇺🇸 · Tracy R. Slatyer🇺🇸 · Chih-Liang Wu🇺🇸

    We examine the possible indirect signatures of dark matter annihilation processes with a non-standard scaling with the dark matter density, and in particular the case where more than two dark matter particles participate in the annihilation process. We point out that such processes can be strongly enhanced at low velocities without violating unitarity, similar to Sommerfeld enhancement in the standard case of two-body annihilation, potentially leading to visible signals in indirect searches. We study in detail the impact of such multi-body annihilations on the ionization history of the universe and consequently the cosmic microwave background, and find that unlike in the two-body case, the dominant signal can naturally arise from the end of the cosmic dark ages, after the onset of structure formation. We examine the complementary constraints from the Galactic Center, Galactic halo, and galaxy clusters, and outline the circumstances under which each search would give rise to the strongest constraints. We also show that if there is a population of ultra-compact dense dark matter clumps present in the Milky Way with sufficiently steep density profile, then it might be possible to detect point sources illuminated by multi-body annihilation, even if there is no large low-velocity enhancement. Finally, we provide a case study of a model where 3-body annihilation dominates the freezeout process, and in particular the resonant regime where a large low-velocity enhancement is naturally generated.

    ↳ astro-ph.COhep-phhep-thJHEP(2019)·17 citations
  46. 46*

    Primordial gravitational wave phenomenology with polarized Sunyaev Zel'dovich tomography

    Anne-Sylvie Deutsch🇺🇸 · Emanuela Dimastrogiovanni🇺🇸 · Matteo Fasiello🇬🇧 · Matthew C. Johnson🇨🇦 · Moritz Münchmeyer🇨🇦

    The detection and characterization of primordial gravitational waves through their impact on the polarization anisotropies of the cosmic microwave background (CMB) is a primary science goal of current and future observations of the CMB. An ancillary dataset that will become accessible with the great leaps in sensitivity of CMB experiments is the polarized Sunyaev Zel'dovich (pSZ) effect, small-scale CMB polarization anisotropies induced by scattering from free electrons in the post-reionization Universe. The cross correlation of the pSZ effect with galaxy surveys, a technique known as pSZ tomography, can be used to reconstruct the remote quadrupole field: the CMB quadrupole observed from different locations in the Universe. Primordial gravitational waves leave a distinct imprint on the remote quadrupole field, making pSZ tomography a potential new method to characterize their properties. Building on previous work, we explore the utility of the full set of correlations between the primary CMB and the reconstructed remote quadrupole field to both provide exclusion limits on the amplitude of primordial gravitational waves, as well as to provide constraints on several phenomenological models of the tensor sector: axion gauge field inflation, general models with chiral tensors, and models with modified late-time decay of tensors. We find that relatively futuristic experimental requirements are necessary to provide competitive exclusion limits compared with the primary CMB. However, pSZ tomography can be a powerful probe of the late-time evolution of tensors and, through cross-correlations with the primary CMB, can provide mild improvements on parameter constraints in various models with chiral primordial gravitational waves.

    ↳ astro-ph.COgr-qchep-phhep-thPRD(2019)·19 citations

* Reconstructed cohort: no mailing for this day survives in the archive. Papers are grouped by their submission times and arXiv's announcement cut-off, assuming announcement without delay; positions follow identifier order. Validated at ~91% exact-day agreement against the archived era.