PaperPanorama

HEP Phenomenology·hep-ph

Tue·Dec 25, 2018

27 papers—18 primary·9 cross-listed·reconstructed*

  1. 01*

    Baryogenesis, Dark Matter, and Flavor Structure in Non-thermal Moduli Cosmology

    Mu-Chun Chen🇺🇸 · Volodymyr Takhistov🇺🇸

    The appearance of scalar/moduli fields in the early universe, as motivated by string theory, naturally leads to non-thermal "moduli cosmology". Such cosmology provides a consistent framework where the generation of radiation, baryons, and dark matter can occur while maintaining successful Big Bang Nucleosynthesis and avoiding the cosmological moduli problem. We present a relatively economical construction with moduli cosmology, building on a variety of string-inspired components (e.g. supersymmetry, discrete symmetries, Green-Schwarz anomaly cancellation). We address a range of outstanding problems of particle physics and cosmology simultaneously, including the fermion mass hierarchy and flavor puzzle, the smallness of neutrino masses, baryogenesis and dark matter. Our setup, based on discrete symmetry and anomalous , is void of the usual issues plaguing the Minimal Supersymmetric Standard Model, i.e. the -problem and the overly-rapid proton decay due to dimension-4,-5 operators. The model is compatible with Grand Unification. The smallness of Dirac neutrino masses is automatically established by requiring the cancellation of mixed gravitational-gauge anomalies. The decay of the moduli field provides a common origin for the baryon number and dark matter abundance, explaining the observed cosmic coincidences, .

    hep-phastro-ph.COhep-thJHEP(2019)·6 citations
  2. 02*

    Illuminating Stealth Scenarios at the LHC

    Jong Soo Kim🇿🇦 · Manuel E. Krauss🇩🇪 · Victor Martin-Lozano🇩🇪 · Florian Staub🇩🇪

    Several ideas exist how the stringent mass limits from LHC on new coloured particles can be avoided. One idea are the so-called `stealth' scenarios in which missing transversal energy (MET) is avoided due a peculiar mass configuration. It is usually assumed that the cascade decay of the dominantly-produced coloured particle finishes in a two-body decay, where this mass configuration leads to a very small amount of MET. We discuss here the potential impact of other decay channels, either loop-induced or via off-shell mediators. It is shown that those channels already become important even for moderate branching ratios of 10%. Larger branching ratios in particular into a photon can completely wash out all benefits of the stealth setup. We discuss this in a model-independent form, but also at the simplest SUSY stealth scenario which can be realised in the NMSSM.

    hep-phPRD(2020)·2 citations
  3. 03*

    Baryonic susceptibilities, quark-diquark models, and quark-hadron duality at finite temperature

    E. Megias🇪🇸 · E. Ruiz Arriola🇪🇸 · L.L. Salcedo🇪🇸

    Fluctuations of conserved charges such as baryon number, electric charge and strangeness may provide a test for completeness of states in lattice QCD for three light flavors. We elaborate on the idea that the corresponding susceptibilities can be saturated with excited baryonic states with an underlying quark-diquark structure with a linearly confining interaction. Using Polyakov-loop correlators we show that in the static limit, the quark-diquark potential coincides with the quark-antiquark potential in marked agreement with recent lattice studies. We thus study in a quark-diquark model the baryonic fluctuations of electric charge, baryon number and strangeness: , and ; by considering a realization of the hadron resonance gas model in the light flavor sector of QCD. These results have been obtained by using the baryon spectrum computed within a relativistic quark-diquark model, leading to an overall good agreement with the spectrum obtained with other quark models and with lattice data for the fluctuations.

    hep-phhep-latnucl-thPRD(2019)·4 citations
  4. 04*

    Role of the spectator system in electromagnetic effects

    K. Mazurek🇵🇱 · A. Rybicki🇵🇱 · A. Szczurek🇵🇱 · V. Ozvenchuk🇵🇱 · P.N. Nadtochy🇷🇺 · A. Kelic🇩🇪 · A. Marcinek🇵🇱

    The electromagnetic effects on charged pion () spectra provide new, independent information on the space-time evolution of the ultrarelativistic heavy ion collision. The spectator life time and its excitation energy may also be of importance for the understanding of the space-time evolution of the participant zone. This paper gives an overview of our coordinated effort to understand the interplay between electromagnetic phenomena and processes related to the fragmentation of the spectator system at forward rapidity in peripheral + collisions at top CERN SPS energies. Our study includes on one hand the experimental analysis of electromagnetic effects and corresponding phenomenological Monte Carlo simulations, and on the other hand dedicated theoretical calculations based on the Abrasion-Ablation model ABRABLA and the 4D Langevin approach.

    hep-phnucl-th0 citations
  5. 05*

    Factorisation of soft gluons in multiparton scattering

    Markus Diehl🇩🇪 · Riccardo Nagar🇩🇪

    We show that soft gluons exchanged between the two colliding protons in multiparton scattering processes can be decoupled, such that their effects are described by the vacuum expectation values of Wilson lines. Our argument relies on nonabelian Ward identities and generalises the proof of factorisation for single Drell-Yan production given by Collins, Soper and Sterman.

    hep-phJHEP(2019)·27 citations
  6. 06*

    Finite volume effects on chiral phase transition and pseudoscalar mesons properties from the Polyakov-Nambu-Jona-Lasinio model

    Zhao Ya-Peng🇨🇳 · Yin Pei-Lin🇨🇳 · Yu Zhen-Hua🇨🇳 · Zong Hong-Shi🇨🇳

    Within the framework of Polyakov-Nambu-Jona-Lasinio model and by means of Multiple Reflection Expansion, we study the finite volume effects on chiral phase transition, especially its influence on the location of the possible critical end point (CEP) and masses of mesons. Our result shows that as the radius of spherical volume decreases, the location of CEP shifts toward smaller temperature while changes little in chemical potential. As for the finite volume effects on the masses of mesons, the masses of and increase with decreasing volume, while for , and the situation is the opposite. Especially, the masses of chiral parters and get closer as the volume decreases, indicating that the dynamical chiral symmetry breaking effect reduces with decreasing volume.

    hep-phNPB(2020)·20 citations
  7. 07*

    A meta-analysis of neutron lifetime measurements

    Ashwani Rajan🇮🇳 · Shantanu Desai🇮🇳

    We calculated the median as well as weighted mean central estimates for the neutron lifetime, from a subset of measurements compiled in the 2019 update of the Particle Data Group (PDG). We then reconstruct the error distributions for the residuals using three different central estimates and then check for consistency with a Gaussian distribution. We find that although the error distributions using the weighted mean as well as median estimate are consistent with a Gaussian distribution, the Student's and Cauchy distribution provide a better fit. This median statistic estimate of the neutron lifetime from these measurements is given by seconds. This can be used as an alternate estimate of the neutron lifetime. We also note that the discrepancy between beam and bottle-based measurements using median statistics of the neutron lifetime persists with a significance between 4-8, depending on which combination of measurements is used.

    hep-phastro-ph.COhep-exnucl-ex+1PTEP(2020)·13 citations
  8. 08*

    CP violation of quarks in modular invariance

    Hiroshi Okada🇰🇷 · Morimitsu Tanimoto🇯🇵

    We discuss the quark mass matrices in the modular symmetry, where the triplet of Higgs is introduced for each up-quark and down-quark sectors, respectively. The model has six real parameters and two complex parameters in addition to the modulus . By inputting six quark masses and three CKM mixing angles, we can predict the CP violation phase and the Jarlskog invariant . The predicted ranges of and are consistent with the observed values. The absolute value of is smaller than , while is lager than . In conclusion, our quark mass matrices with the modular symmetry can reproduce the CKM mixing matrix completely with observed quark masses.

    hep-phPLB(2019)·177 citations
  9. 09*

    Effects of jet-medium interactions on angular correlations of jet-particle pairs at different energy scales

    Martin Rohrmoser🇵🇱 · Pol Gossiaux🇫🇷 · Thierry Gousset🇫🇷 · Joerg Aichelin🇫🇷 · Iurii Karpenko🇫🇷

    The energy-loss of hard probes within the hot and dense medium of a quark gluon plasma (QGP) can be described by theoretical models based on radiative energy loss as well as combinations of collisional and radiative energy loss. In a search for observables that allow to disentangle these energy-loss mechanisms, we introduced a set of effective models that allows to investigate the consequences on jets of both types of jet-medium interactions within a consistent framework. We particularly studied angular jet-broadening via angular two-particle correlations. Distinguishing contributions from pairs at different scales of particle momenta, we found qualitative differences between radiative and collisional approaches.

    hep-phPoS(2018)·0 citations
  10. 10*

    Neutrino oscillations in accelerated frames

    Massimo Blasone🇮🇹 · Gaetano Lambiase🇮🇹 · Giuseppe Gaetano Luciano🇮🇹 · Luciano Petruzziello🇮🇹

    We discuss neutrino oscillations in vacuum from the point of view of a uniformly accelerated observer. A covariant definition of quantum phase is introduced with the aim of generalizing the standard expression of the oscillation amplitude to the accelerating frame. By way of illustration, we address a simplified two-flavor model with relativistic neutrinos, showing that inertial effects on the usual Pontecorvo formula are intimately related to the energy redshift. Phenomenological aspects are preliminarily analyzed in the context of atmospheric neutrinos. Finally, we discuss a gedanken experiment in order to investigate our formalism in regime of extreme acceleration.

    hep-phEPL(2018)·20 citations
  11. 11*

    Tri-meson bound state via delocalized ~Bond

    Li Ma🇩🇪 · Qian Wang🇩🇪 · Ulf-G. Meißner🇩🇪

    During the last decades, numerous exotic states which cannot be explained by the conventional quark model have been observed in experiment. Some of them can be understood as two-body hadronic molecules, such as the famous , analogous to deuteron in nuclear physics. Along the same line, the existence of the triton leaves an open question whether there is a bound state formed by three hadrons. Since, for a given potential, a system with large reduced masses is more easier to form a bound state, we study the system with the one-pion exchange potential as an exploratory step by solving the three-body Schrödinger Equation. We predict that a tri-meson molecular state for the system is probably existent as long as the molecular states of its two-body subsystem exist.

    hep-phnucl-thPRD(2019)·13 citations
  12. 12*

    Excited mesons in decays

    A. V. Luchinsky🇷🇺

    In the presented paper exclusive decays and are analyzed. It is shown that contributions of the excited mesons should be taken into account to describe these decays. It is also shown that, unlike the corresponding lepton decays, peaks in distributions caused by these resonances are clearly seen and can be easily separated. Theoretical predictions for the branching fractions of the reactions and distributions are also presented.

    hep-phPRD(2019)·3 citations
  13. 13*

    Neutrino elastic scattering on polarized electrons as a tool for probing the neutrino nature

    A. Błaut🇵🇱 · W. Sobków🇵🇱

    Possibility of using the polarized electron target (PET) for testing the neutrino nature is considered. One assumes that the incoming electron neutrino () beam is the superposition of left chiral states with right chiral ones. Consequently the non-vanishing transversal components of spin polarization may appear, both T-even and T-odd. s are produced by the low energy monochromatic (un)polarized emitter located at a near distance from the hypothetical detector which is able to measure both the azimuthal angle and polar angle of the recoil electrons, and/or also the energy of the outgoing electrons with a high resolution. A detection process is the elastic scattering of s (Dirac or Majorana) on the polarized electrons. Left chiral (LC) s interact mainly by the standard interaction, while right chiral (RC) ones participate only in the non-standard , scalar , pseudoscalar and tensor interactions. All the interactions are of flavour-conserving type (FC). We show that a distinction between the Dirac and the Majorana s is possible both for the longitudinal and the transversal polarizations. In the first case a departure from the standard prediction of the azimuthal asymmetry of recoil electrons is caused by the interferences between the non-standard complex S and T couplings. Such a deviation would indicate the Dirac nature and the presence of time reversal symmetry violation (TRSV) interactions. In the second case the azimuthal asymmetries, polar distribution and energy spectrum of scattered electrons are sensitive to the interference terms between the standard and exotic interactions, proportional to the various angular correlations. Our model-independent study is carried out for the flavour eigenstates in the relativistic limit.

    hep-phEPJC(2020)·10 citations
  14. 14*

    Double Higgs boson production at colliders in the two-Higgs-doublet model

    Tadashi Kon🇯🇵 · Takuto Nagura🇯🇵 · Takahiro Ueda🇯🇵 · Kei Yagyu🇯🇵

    We study the double Higgs boson production processes () with being the 125 GeV Higgs boson in the two-Higgs-doublet model with a softly-broken symmetry. The cross section can be significantly enhanced, typically a few hundreds percent, as compared to the standard model prediction due to resonant effects of heavy neutral Higgs bosons, which becomes important in the case without the alignment limit. We find a strong correlation between the enhancement factor of the cross section and the scaling factor of the couplings under constraints from perturbative unitarity, vacuum stability and current experimental data at the LHC as well as the electroweak precision data.

    hep-phPRD(2019)·13 citations
  15. 15*

    Angular distribution coefficients of Z(W) boson produced in collisions at GeV

    Yu-Dong Wang🇨🇳 · Jian-Xiong Wang🇨🇳

    At designed CEPC, similar to hadron collider, the angular distribution coefficients of decay lepton pair from produced Z(W) boson in collisions are predicted. Their dependence on () are presented in four different polarization frame. Furthermore, the value of angular coefficients in different bins of are presented in the C-S frame. In comparison to the case at hadron collider, better accurate measurement for is expected since there exists less background and could be reconstructed from it's leptonic decay channel. This work supply a way to precise test the electroweak production mechanism or some effect induced from new physics in the future measurements at the CEPC.

    hep-phCPC(2019)·0 citations
  16. 16*

    Possible bound states with hidden bottom from systems

    Xiu-Lei Ren🇩🇪 · Zhi-Feng Sun🇨🇳

    We study the three-body systems of by solving the Faddeev equations in the fixed-center approximation, where the light particle interacts with the heavy bound states of () forming the clusters. In terms of the very attractive and subsystems, which are constrained by the observed and states in experiment, we find two deep bound states, containing the hidden-bottom components, with masses MeV and MeV in the and systems, respectively. The two corresponding states with higher masses of the above systems are also predicted. In addition, using the constrained two-body amplitudes of and via the hidden gauge symmetry in the heavy-quark sector, we also find two three-body and bound states.

    hep-phnucl-thPRD(2019)·13 citations
  17. 17*

    Finite modular subgroups for fermion mass matrices and baryon/lepton number violation

    Tatsuo Kobayashi🇯🇵 · Yusuke Shimizu🇯🇵 · Kenta Takagi🇯🇵 · Morimitsu Tanimoto🇯🇵 · Takuya H. Tatsuishi🇯🇵 · Hikaru Uchida🇯🇵

    We study a flavor model that the quark sector has the modular symmetry,while the lepton sector has the modular symmetry. Our model leads to characteristic quark mass matrices which are consistent with experimental data of quark masses, mixing angles and the CP violating phase. The lepton sector is also consistent with the experimental data of neutrino oscillations. We also study baryon and lepton number violations in our flavor model.

    hep-phPLB(2019)·171 citations
  18. 18*

    Testing of quasi-elastic neutrino charged-current and two-body meson exchange current models with the MiniBooNE neutrino data and analysis of these processes at energies available at the NOvA experiment

    A.V. Butkevich🇷🇺 · S.V. Luchuk🇷🇺

    The charged-current quasi-elastic (CCQE) scattering of muon neutrinos on a carbon target is analyzed using the relativistic distorted-wave impulse approximation (RDWIA) taking into account the contribution of the two-particle and two-hole meson exchange current ( MEC) to the weak response functions. A fit the RDWIA+MEC model to the MiniBooNE neutrino data is performed and the best fit value of nucleon axial mass GeV is obtained. We also extract the values of the axial form factor as a function of the squared momentum transfer from the measured cross section. The flux-integrated CCQE-like differential cross sections for neutrino scattering at energies of the NOvA experiment are estimated within the RDWIA+MEC approach.

    hep-phnucl-thPRD(2019)·14 citations
  19. 19*

    The observable statistics

    Basundhara Ghosh🇨🇭 · Ruth Durrer🇨🇭

    Recently Moradinezhad Dizgah & Durrer have shown that the statistics, useful to test theories of modified gravity, is plagued by additional scale and bias dependent lensing contributions. In this work we develop and illustrate a method to remove these lensing terms by using in addition to the galaxy clustering data also shear data and the correlations of shear and galaxy clustering. We introduce a truly observable statistics termed which conserves the properties of scale and bias independence on linear scales. The method discussed here is best adapted to photometric surveys. It is found that the corrections to the original statistics are small for the present DES data, but for future surveys of the quality of Euclid they are very substantial.

    ↳ astro-ph.COgr-qchep-phJCAP(2019)·21 citations
  20. 20*

    Imprints of Early Universe on Gravitational Waves from First-Order Phase Transition in QCD

    Meng-Wei Li🇹🇼 · Yi Yang🇹🇼 · Pei-Hung Yuan🇹🇼

    We study the gravitational wave spectrum from the confinement-deconfinement phase transi-tion in the holographic QCD models for both light quark and heavy quark. We obtain the gravitationalwave spectrum in the deflagration, detonation and runaway cases for different chemical potentials and duration of the phase transition. We find that the gravitational wave spectrum could be observed by EPTA/IPTA and eLISA for large chemical potential and short duartion of phase transtions.

    ↳ hep-thhep-ph10 citations
  21. 21*

    Stability and vacuum energy in open string models with broken supersymmetry

    Steven Abel🇬🇧 · Emilian Dudas🇫🇷 · Daniel Lewis🇬🇧 · Herve Partouche🇫🇷

    We construct type I string models with supersymmetry broken by compactification that are non-tachyonic and have exponentially small effective potential at one-loop. All open string moduli can be stabilized, while the closed string moduli remain massless at one-loop. The backgrounds of interest have rigid Wilson lines by the use of stacked branes, and some models should have heterotic duals. We also present non-tachyonic backgrounds with positive potentials of runaway type at one-loop. This class of models could be used to test various swampland conjectures.

    ↳ hep-thgr-qchep-phJHEP(2019)·45 citations
  22. 22*

    Lorentz Boost Networks: Autonomous Physics-Inspired Feature Engineering

    Martin Erdmann🇩🇪 · Erik Geiser🇩🇪 · Yannik Rath🇩🇪 · Marcel Rieger🇩🇪

    We present a two-stage neural network architecture that enables a fully autonomous and comprehensive characterization of collision events by exclusively exploiting the four momenta of final-state particles. We refer to the first stage of the architecture as Lorentz Boost Network (LBN). The LBN allows the creation of particle combinations representing rest frames. The LBN also enables the formation of further composite particles, which are then transformed into said rest frames by Lorentz transformation. The properties of the composite, transformed particles are compiled in the form of characteristic variables that serve as input for a subsequent network. This second network has to be configured for a specific analysis task such as the separation of signal and background events. Using the example of the classification of ttH and ttbb events, we compare the separation power of the LBN approach with that of domain-unspecific deep neural networks (DNN). We observe leading performance with the LBN, even though we provide the DNNs with extensive additional input information beyond the particle four momenta. Furthermore, we demonstrate that the LBN forms physically meaningful particle combinations and autonomously generates suitable characteristic variables.

    ↳ hep-exhep-phJINST(2019)·59 citations
  23. 23*

    Constraints on the curvature power spectrum from primordial black hole evaporation

    Ioannis Dalianis🇬🇷

    We estimate the maximum allowed amplitude for the power spectrum of the primordial curvature perturbations, , on all scales from the absence of any detection signals of sub-solar mass black holes. In particular we analyze the constraints on the PBHs and we focus on the low mass limit where the Hawking radiation is expected to significantly influence the big bang observables, considering also different early cosmic histories. We derive the upper bounds for the variance of density perturbations, , for any possible reheating temperature as well as for the cosmological scenario of a scalar condensate domination. We expect our results to have considerable implications for models designed to generate PBHs, especially in the low mass range, and provide additional constraints to a large class of inflationary models.

    ↳ astro-ph.COgr-qchep-phJCAP(2019)·38 citations
  24. 24*

    Data-taking strategy for the precise measurement of the boson mass with a threshold scan at circular electron positron colliders

    P. X. Shen🇨🇳 · P. Azzurri🇮🇹 · C. X. Yu🇨🇳 · M. Boonekamp🇫🇷 · C. M. Kuo🇹🇼 · P. Z. Lai🇹🇼 · B. Li · G. Li · H. N. Li · Z. J. Liang🇨🇳 · B. Liu🇨🇳 · J. M. Qian🇺🇸 · L. S. Shi🇨🇳

    Circular electron positron colliders, such as the CEPC and FCC-ee, have been proposed to measure Higgs boson properties precisely, test the Standard Model, search for physics beyond the Standard Model, and so on. One of the important goals of these colliders is to measure the boson mass with great precision by taking data around the -pair production threshold. In this paper, the data-taking scheme is investigated to maximize the achievable precisions of the boson mass and width with a threshold scan, when various systematic uncertainties are taken into account. The study shows that an optimal and realistic data-taking scheme is to collect data at three center-of-mass energies and that precisions of 1.0 MeV and 3.4 MeV can be achieved for the mass and width of the boson, respectively, with a total integrated luminosity of ~\mbox{ab} and several assumptions of the systematic uncertainty sources.

    ↳ hep-exhep-phEPJC(2020)·6 citations
  25. 25*

    Scale Symmetry and Weinberg's No-go Theorem in the Cosmological Constant Problem

    Ichiro Oda🇯🇵

    We complete the proof of Weinberg's no-go theorem on the cosmological constant problem in classical gravity when the theory has a (global) scale symmetry. Stimulated with this proof, we explore a solution to the cosmological constant problem by the help of renormalization group equations. We find that the manifestly scale invariant regularization method provides a physically plausible solution to the cosmological constant problem, in particular, to the issue of radiative instability of the cosmological constant.

    ↳ hep-thgr-qchep-phAdv.Stud.Theor.Phys.(2019)·4 citations
  26. 26*

    Hillclimbing inflation in metric and Palatini formulations

    Ryusuke Jinno🇰🇷 · Kunio Kaneta🇺🇸 · Kin-ya Oda🇯🇵 · Seong Chan Park🇰🇷

    A new setup of cosmic inflation with a periodic inflaton potential and conformal factor is discussed in the metric and Palatini formulations of gravity. As a concrete example, we focus on a natural-inflation-like inflaton potential, and show that the inflationary predictions fall into the allowed region of cosmic microwave background observations in both formulations.

    ↳ gr-qchep-phPLB(2019)·40 citations
  27. 27*

    Local suppression and enhancement of pairing condensate under rotation

    Lingxiao Wang🇨🇳 · Yin Jiang🇨🇳 · Lianyi He🇨🇳 · Pengfei Zhuang🇨🇳

    The rotation induced inhomogeneous problem is non-trivial and inevitable. In this paper a generic framework is developed to investigate the inhomogeneous condensate in a system of fermions under the presence of rotation. It is a self-consistent method basing on a set of relativistic BdG equations solved with typical iteration algorithm. Taking the chiral condensate for example we study rotational effects numerically and discover two inhomogeneous effects, the local rotational suppression effect and centrifugal effect. They may have significant impacts on the phase structure of various kinds of matter. Several systems in different physics branches have been discussed in the paper.

    ↳ nucl-thhep-phhep-thPRC(2019)·29 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.