PaperPanorama

HEP Phenomenology·hep-ph

Tue·Dec 31, 2019

48 papers39 primary·9 cross-listed·reconstructed*

  1. 01*

    Deep reinforcement learning for complex evaluation of one-loop diagrams in quantum field theory

    Andreas Windisch🇺🇸 · Thomas Gallien🇦🇹 · Christopher Schwarzlmueller🇦🇹

    In this paper we present a novel technique based on deep reinforcement learning that allows for numerical analytic continuation of integrals that are often encountered in one-loop diagrams in quantum field theory. In order to extract certain quantities of two-point functions, such as spectral densities, mass poles or multi-particle thresholds, it is necessary to perform an analytic continuation of the correlator in question. At one-loop level in Euclidean space, this results in the necessity to deform the integration contour of the loop integral in the complex plane of the square of the loop momentum, in order to avoid non-analyticities in the integration plane. Using a toy model for which an exact solution is known, we train a reinforcement learning agent to perform the required contour deformations. Our study shows great promise for an agent to be deployed in iterative numerical approaches used to compute non-perturbative 2-point functions, such as the quark propagator Dyson-Schwinger equation, or more generally, Fredholm equations of the second kind, in the complex domain.

    hep-phcs.LGphysics.comp-phPRE(2020)·7 citations
  2. 02*

    Radiative neutrino mass model from a mass dimension-11 effective operator

    John Gargalionis🇦🇺 · Iulia Popa-Mateiu🇦🇺 · Raymond R. Volkas🇦🇺

    We present the first detailed phenomenological analysis of a radiative Majorana neutrino mass model constructed from opening up a mass-dimension-11 effective operator constructed out of standard model fields. While three such operators are generated, only one dominates neutrino mass generation, namely , where denotes lepton doublet, quark doublet and Higgs doublet. The underlying renormalisable theory contains the scalars coupling as a diquark, coupling as a leptoquark, and , which has no Yukawa couplings but does couple to and in addition to the gauge fields. Neutrino masses and mixings are generated at two-loop order. A feature of this model that is different from many other radiative models is the lack of proportionality to any quark and charged-lepton masses of the neutrino mass matrix. One consequence is that the scale of new physics can be as high as TeV, despite the operator having a high mass dimension. This raises the prospect that effective operators at even higher mass dimensions may, when opened up, produce phenomenologically-viable radiative neutrino mass models. The parameter space of the model is explored through benchmark slices that are subject to experimental constraints from charged lepton flavour-violating decays, rare meson decays and neutral-meson mixing. The acceptable parameter space can accommodate the anomalies in and the anomalous magnetic moment of the muon.

    hep-phJHEP(2020)·10 citations
  3. 03*

    Comment on "Probing the Dark Matter-Electron Interactions via Hydrogen-Atmosphere Pulsating White Dwarfs''

    Jia-Shu Niu🇨🇳 · Hui-Fang Xue🇨🇳

    In Phys. Rev. D 98, 103023 (2018), a novel scenario was proposed to probe the interactions between dark matter (DM) particles and electrons, via hydrogen-atmosphere pulsating white dwarfs (DAVs) in globular clusters. The estimation showed that the scenario could hopefully test the parameter space: and , where is the DM particle's mass and is the elastic scattering cross section between DM and electron. In this comment, we have determined the exact lower limit of the testable DM particle mass , which depends on . This gives us a credible lower limit of the testable DM particle mass in above scenario, and provide a clear upper limit of the DM particle mass which we should consider in future research.

    hep-phastro-ph.HEastro-ph.SR0 citations
  4. 05*

    New neutrino spin oscillations in moving matter and magnetic fields

    Alexander Studenikin🇷🇺

    After a short introduction to the history of neutrino mixing and oscillations, we celebrate the 50th anniversary of the first analytical expression for the neutrino evolution probability obtained by Gribov and Pontecorvo in 1969 by the discussion of two new phenomena in neutrino oscillations: 1) the emergence of the neutrino spin and spin-flavour oscillations engendered by the transversal in respect to neutrino propagation matter currents, and 2) an inherent interplay of neutrino oscillations on the vacuum and magnetic frequencies in the case of neutrino propagation in a constance magnetics field. We also predict a new phenomena of the modification of the flavour neutrino oscillations probability in moving matter that can be engendered by a non-vanishing matter transversal current .

    hep-phastro-ph.HE3 citations
  5. 06*

    Neutrino oscillations and evolution in external environments: New effects

    Alexander Studenikin🇷🇺

    During a period of about two decades we have realized a programme of systematic investigations of different aspects of neutrino propagation in extreme external environments and have predicted and studied several new phenomena that are engendered by the presence of external magnetic fields and dense matter. The starting point that underlies the research is the fact that the electromagnetic properties of neutrinos open a window to new physics \cite{Giunti:2014ixa,Studenikin:2008bd, Studenikin:2018vnp}. In these brief notes, we recall several new phenomena that have been proposed and investigated earlier. In particular, we discuss: 1) the spin light of neutrino in matter, 2) the neutrino energy quantization in rotating matter, and 3) neutrino start turning mechanism. Then we dwell on results of recent studies: 4) the effects of interplay of neutrino flavour and spin oscillations in a magnetic field, 5) the quantum theory of neutrino spin and spin-flavour oscillations engendered by the transversal mater currents, 6) the amplitude modulation of the flavour neutrino oscillation probability by the transversal matter current. As for references to the literature, only those papers are included in which a particular effect was proposed and considered for the first time and in a number of cases references are also be given to the most recent articles, which contain detailed references to the available literature on the issue.

    hep-phastro-ph.HEPoS(2020)·0 citations
  6. 07*

    Electromagnetic properties of neutrinos

    Alexander Studenikin🇷🇺

    After a brief introduction to neutrino electromagnetic properties we focus on the most important constraints on neutrino magnetic moments, charge radii and millicharges from the terrestrial experiments and astrophysical considerations. The promising new possibilities for constraining neutrino electromagnetic properties in future experiments are also discussed.

    hep-phastro-ph.HEPoS(2020)·3 citations
  7. 09*

    Unitarily Inequivalent Vacua and Long-Range Forces: Phenomenology with Scalar Boson Mass-Shift

    Quan Le Thien🇺🇸 · Dennis E. Krause🇺🇸

    We explore the impact of a sudden shift in the mass of a scalar boson field on long-range forces mediated by this field under the framework of unitarily inequivalent vacua. Since the search for new long-range forces is an active experimental area probing physics beyond the Standard Model, the consequence of a non-trivial vacuum state of a scalar boson on these experiments is elucidated. We show that while the mass shift affects the one-boson exchange potential, the Casimir force remains only dependent on the vacuum state.

    hep-phMod.Phys.Lett.A(2020)·0 citations
  8. 10*

    Universality in Hadronic and Nuclear Collisions at High Energy

    Paolo Castorina🇮🇹 · Alfredo Iorio🇨🇿 · Daniele Lanteri🇮🇹 · Martin Spousta🇨🇿 · Helmut Satz🇩🇪

    Recent experimental results in proton-proton and in proton-nucleus collisions at Large Hadron Collider energies show a strong similarity to those observed in nucleus-nucleus collisions, where the formation of a quark-gluon plasma is expected. We discuss the comparison between small colliding systems and nucleus-nucleus collisions, for: a)~the strangeness suppression factor and yields of multi-strange hadrons; b)~the average transverse momentum, , with particular attention to the low region where soft, non-perturbative effects are important; c)~the elliptic flow scaled by the participant eccentricity. The universal behavior in hadronic and nuclear high energy collisions emerges for all these observables in terms of a specific dynamical variable which corresponds to the entropy density of initial system in the collision and which takes into account the transverse size of the initial configuration and its fluctuations.

    hep-phnucl-thPRC(2020)·30 citations
  9. 11*

    Towards recognizing the light facet of the Higgs Boson

    Alexandre Alves🇧🇷 · Felipe F. Freitas🇨🇳

    The Higgs boson couplings to bottom and top quarks have been measured and agree well with the Standard Model predictions. Decays to lighter quarks and gluons, however, remain elusive. Observing these decays is essential to complete the picture of the Higgs boson interactions. In this work, we present the perspectives for the 14 TeV LHC to observe the Higgs boson decay to gluon jets assembling convolutional neural networks, trained to recognize abstract jet images constructed embodying particle flow information, and boosted decision trees with kinetic information from Higgs-strahlung events. We show that this approach might be able to observe Higgs to gluon decays with a significance of around improving significantly previous prospects based on cut-and-count analysis. An upper bound of at 95\% confidence level after 3000 fb of data is obtained using these machine learning techniques.

    hep-phMach.Learn.Sci.Tech.(2020)·11 citations
  10. 12*

    Spectrum of the strange hidden charm molecular pentaquarks in chiral effective field theory

    Bo Wang🇨🇳 · Lu Meng🇨🇳 · Shi-Lin Zhu🇨🇳

    We calculate the effective potentials of the , and systems with the chiral effective field theory up to the next-to-leading order. We simultaneously consider the short-, intermediate- and long-range interactions. With the newly observed spectra as inputs, we construct the quark-level contact Lagrangians to relate the low energy constants to those of with the help of quark model. Our calculation indicates there are seven bound states in the strange hidden charm and systems. Our analyses also disfavor the bound states. However, we obtain three new hadronic molecules in the isoscalar systems. The masses of , and are predicted to be MeV, MeV and MeV, respectively. We also notice the one-eta-exchange influence is rather feeble. Binding solutions in the channels are nonexistent. We hope the future analyses at LHCb can seek for these new s in the final states, especially near the thresholds of .

    hep-phhep-exhep-latnucl-ex+1PRD(2020)·126 citations
  11. 13*

    PandaX limits on light dark matter with light mediator in the singlet extension of MSSM

    Wenyu Wang🇨🇳 · Jia-Jun Wu🇨🇳 · Zhao-Hua Xiong🇨🇳 · Jun Zhao🇨🇳

    Using the latest PandaX limits on light dark matter (DM) with light mediator, we check the implication on the parameter space of the general singlet extension of MSSM (without symmetry), which can have a sizable DM self-interaction to solve the small-scale structure problem. We find that the PandaX limits can stringently constrain such a paramter space, depending on the coupling between the singlet and doublet Higgs fields. For the singlet extension of MSSM with symmetry, the so-called NMSSM, we also demonstrate the PandaX constraints on its parameter space which gives a light DM with correct relic density but without sufficient self-interaction to solve the small-scale structure problem. We find that in this NMSSM the GeV dark matter with a sub-GeV mediator has been stringently constrained.

    hep-phCPC(2020)·2 citations
  12. 14*

    A flipped extension of the Standard Model

    Cao H. Nam🇻🇳

    In this work, we study an extension of the Standard Model (SM) based on the gauge symmetry where only the right-handed fermions have nonzero charge and the weak hypercharge of the SM is identified as a combination of the and charges. The gauge charge assignment of the fields is constrained by the conditions of the anomaly cancellation and the gauge invariance of the Yukawa couplings. The light neutrino masses are generated via the type-I seesaw mechanism where the Majorana masses of the right-handed neutrinos are related to the symmetry breaking scale. Then, we discuss the constraints on the free parameters of the model from the various current experiments, such as precision measurement of the total width, parameter, atomic parity violation of Cesium, LEP and LHC bounds. In addition, we investigate the potential of probing for the signal of the new neutral gauge boson based on the forward-backward asymmetry for the process which is the most sensitive mode at ILC.

    hep-phJ.Phys.G(2020)·3 citations
  13. 15*

    FCNC transitions of to neutron in Bethe-Salpeter equation approach

    Liang-Liang Liu🇨🇳 · Chao Wang🇨🇳 · Xian-Wei Kang🇨🇳 · Xin-Heng Guo🇨🇳

    In a covariant quark-diquark model, we investigate the rare decay of and in the Bethe-Salpeter equation approach. In this model the baryons are treated as bound states of a constituent quark and a diquark interacting via a gluon exchange and the linear confinement. We find that the ratio of form factors is varies from to and the branching ratios are and the branching ratio in central values of parameters.

    hep-phEPJC(2020)·9 citations
  14. 16*

    First-order electroweak phase transition in a complex singlet model with symmetry

    Cheng-Wei Chiang🇹🇼 · Bo-Qiang Lu🇹🇼

    We consider an extension of the Standard Model with a complex singlet scalar, where a global symmetry is explicitly broken to symmetry. We study the two-step electroweak phase transition in the model and find that it can be of first-order if the heavy scalar mass falls in the range of ~TeV and the mixing angle (). The Higgs signal strength measurements at the LHC, on the other hand, restrict the mixing angle (). Future colliders including high-luminosity LHC can probe the remaining parameter space of first-order phase transition in this scenario. After the symmetry breaking, the pseudo-Goldstone boson becomes a dark matter candidate due to a hidden symmetry of the model. We find that the pseudo-Goldstone boson can make up a small fraction of the observed dark matter and escape from the constraints of current direct detection. We also show that the stochastic gravitational wave signals from the phase transition are potentially discoverable with future space-based interferometers.

    hep-phJHEP(2020)·59 citations
  15. 17*

    Kondo effect driven by chirality imbalance

    Daiki Suenaga🇨🇳 · Kei Suzuki🇯🇵 · Yasufumi Araki🇯🇵 · Shigehiro Yasui🇯🇵

    We propose a novel mechanism of the Kondo effect driven by a chirality imbalance (or chiral chemical potential) of relativistic light fermions. This effect is realized by the mixing between a right- or left-handed fermion and a heavy impurity in the chirality imbalanced matter even at zero density. This is different from the usual Kondo effect induced by finite density. We derive the Kondo effect from both a perturbative calculation and a mean-field approach. We also discuss the temperature dependence of the Kondo effect. The Kondo effect at nonzero chiral chemical potential can be tested by future lattice simulations.

    hep-phcond-mat.mes-hallcond-mat.str-elPRResearch(2020)·14 citations
  16. 18*

    Synergies between astroparticle, particle and nuclear physics

    Caterina Doglioni🇸🇪

    One overarching objective of science is to further our understanding of the universe, from its early stages to its current state and future evolution. This depends on gaining insight on the universe's most macroscopic components, for example galaxies and stars, as well as describing its smallest components, namely elementary particles and nuclei and their interactions. It is clear that this endeavour requires combined expertise from the fields of astroparticle physics, particle physics and nuclear physics. Pursuing common scientific drivers also require mastering challenges related to instrumentation (e.g. beams and detectors), data acquisition, selection and analysis, and making data and results available to the broader science communities. Joint work and recognition of these "foundational" topics will help all communities grow towards their individual and common scientific goals. The talk corresponding to this contribution has been presented during the special ECFA session of EPS-HEP 2019 focused on the update of the European Strategy of Particle Physics.

    hep-phhep-exPoS(2020)·0 citations
  17. 19*

    The hidden-charm strong decays of the states

    Li-Ye Xiao🇨🇳 · Guang-Juan Wang🇨🇳 · Shi-Lin Zhu🇨🇳

    Inspired by BESIII's measurement of the decay , we calculate the branching fraction ratio between the and decay modes for the charged states , and using a quark interchange model. Our results show that (i) the ratio is 1.3 and 1.6 in the molecular and tetraquark scenarios respectively, which is roughly consistent with the experimental data . (ii) The ratios and are about 12.5 and 24.2, respectively in the molecular scenario. In contrast, these ratios are about 1.2 in the tetraquark scenario. The non-observation of the signal in the decay mode strongly indicates that and are molecule-like signals which arise from the hadronic interactions.

    hep-phhep-exhep-latnucl-thPRD(2020)·28 citations
  18. 20*

    Quasi parton distribution function and quasi generalized parton distribution of the pion meson in a spectator model

    Zhi-Lei Ma🇨🇳 · Jia-Qing Zhu🇨🇳 · Zhun Lu🇨🇳

    We study the leading-twist quasi parton distribution function (quasi-PDF) and quasi generalize parton distribution (quasi-GPD) of the pion meson by using a spectator model. We consider the case the quasi functions are defined via inserting the matrix in the spacial correlation functions. We obtain the analytical expressions for the quasi-PDF and quasi-GPD. The numerical results for them are calculated from the parameters obtained by fitting the model results to the known parametrization. Particularly, we investigate the hadron momentum dependence of the quasi functions as well as compare the quasi distributions to the standard functions at different hadron momentum. We find that in the region , the quasi distribution are similar to the standard distributions in size and shape when the hadron momentum is larger than GeV. Our study thus supports the idea of using quasi distributions to obtain standard distributions.

    hep-phPRD(2020)·27 citations
  19. 21*

    The production of associated with at ep colliders

    Rong Li🇨🇳

    We investigate the direct photoproduction of at colliders with different center of mass energies in this paper. For the color-singlet part we take into account the contribution from QED subprocess as well as the QCD one. Our results show that the QED subprocess not only enhances the differential cross section in the large region but also gives a more transverse with increase, which is different from the almost unpolarized predicted by the QCD subprocess. The contribution from color octet subprocesses enhances the differential cross section by a factor of 5 in large region and predicts an even more transverse in the medium and large region. The sensitivity of this process to the color-octet matrix element may give great help in studying the matrix element.

    hep-ph1 citation
  20. 22*

    Determining Strong Phase of Meson Decay Amplitude using Process

    Kaoru Hagiwara🇯🇵 · Hiroyuki Ishida🇯🇵 · Toshifumi Yamada🇯🇵 · Daneng Yang🇨🇳

    To measure the helicity of a spin-1 meson from the triple vector product of the three-momenta of its decay products, one needs information about the strong phase of the decay amplitude. In this paper, taking meson as an example, we present a method to extract information about the strong phase from the triple vector product of the pion momenta in process, where the helicity is known a priori from electroweak theory. This process is advantageous in that highly-boosted mesons from decays have nearly maximal helicity asymmetry and thus most reflect the strong phase. We revisit the theoretical calculation of the meson helicity in process. We formulate the differential decay rate of polarized mesons in a manner convenient for the study of the meson helicity asymmetry. Finally, we present the method for extracting information about the strong phase, and assess its feasibility at the LHC.

    hep-phPRD(2020)·1 citation
  21. 23*

    Diluting SUSY flavour problem on the Landscape

    Emilian Dudas🇫🇷 · Priyanka Lamba🇮🇳 · Sudhir K. Vempati🇮🇳

    We consider an explicit effective field theory example based on the Bousso-Polchinski framework with a large number N of hidden sectors contributing to supersymmetry breaking. Each contribution comes from four form quantized fluxes, multiplied by random couplings. The soft terms in the observable sector in this case become random variables, with mean values and standard deviations which are computable. We show that this setup naturally leads to a solution of the flavor problem in low-energy supersymmetry if N is sufficiently large. We investigate the consequences for flavor violating processes at low-energy and for dark matter.

    hep-phPLB(2020)·4 citations
  22. 24*

    The multilayer structure of protons

    I.M. Dremin🇷🇺

    It is argued that the dynamics of the elastic scattering of high-energy protons at intermediate transferred momenta changes with the energy increase. It evolves from the multiple scattering at the external layer for energies about 10 GeV to the double scattering at the two subsequent layers within the colliding protons for energies about 10 TeV. The problem of the unitarity is considered in this context.

    hep-phhep-exnucl-exnucl-thEPJC(2020)·10 citations
  23. 25*

    Singlet-Doublet Fermionic Dark Matter and Gravitational Wave in Two Higgs Doublet Extension of the Standard Model

    Basabendu Barman🇮🇳 · Amit Dutta Banik🇨🇳 · Avik Paul🇮🇳

    We present a study of singlet-doublet vector-like leptonic dark matter (DM) in the framework of two Higgs doublet model (2HDM), where the dark sector is comprised of one doublet and one singlet vectorlike fermions (VLFs). The DM, that arises as an admixture of the neutral components of the VLFs, is stabilized by an imposed discrete symmetry . We test the viability of the model in the light of observations from PLANCK and recent limits on spin-independent direct detection experiments, and search for its possible collider signals. In addition, we also look for the stochastic gravitational wave (GW) signatures resulting from strong first order phase transition due to the presence of the second Higgs doublet. The model thus offers a viable parameter space for a stable DM candidate that can be probed from direct search, collider and GW experiments.

    hep-phPRD(2020)·27 citations
  24. 26*

    Study on the States Decaying to in collisions at , 13 TeV

    Hong-ge Xu🇨🇳 · Gang Chen🇨🇳 · Yu-Liang Yan🇨🇳 · Dai-Mei Zhou🇨🇳 · Liang Zheng🇨🇳 · Yi-Long Xie🇨🇳 · Zhi-Lei She🇨🇳 · Ben-Hao Sa🇨🇳

    The production of strange particles is simulated in mid-rapidity collisions at TeV with ~GeV/c using the {\footnotesize PACIAE} model. The results are consistent with LHCb experimental data on and yield. Then, a dynamically constrained phase-space coalescence ({\footnotesize DCPC}) model plus {\footnotesize PACIAE} model was used to produce the bound states and study the narrow excited states through in collisions at and 13 TeV. The yield, transverse momentum distribution, and rapidity distribution of the five new excited states of , , ,and were predicted.

    hep-phPRC(2020)·13 citations
  25. 27*

    Soft corrections to inclusive deep-inelastic scattering at four loops and beyond

    Goutam Das (Siegen U., TP1)🇩🇪 · Sven-Olaf Moch (Hamburg U., Inst. Theor. Phys. II)🇩🇪 · Andreas Vogt (Liverpool U., Dept. Math)🇬🇧

    We study the threshold corrections for inclusive deep-inelastic scattering (DIS) and their all-order resummation. Using recent results for the QCD form factor, related anomalous dimensions and Mellin moments of DIS structure functions at four loops we derive the complete soft and collinear contributions to the DIS Wilson coefficients at four loops. For a general gauge group the results are exact in the large- approximation and for QCD with we present precise approximations. We extend the threshold resummation exponent in Mellin- space to the fifth logarithmic (NLL) order collecting the terms to all orders in the strong coupling constant . We study the numerical effect of the NLL corrections using both the fully exponentiated form and the expansion of the coefficient function in towers of logarithms. As a byproduct, we derive a numerical result for the complete pole structure of the QCD form factor in the parameter of dimensional regularization at four loops.

    hep-phJHEP(2020)·76 citations
  26. 28*

    Generating the Cabibbo Angle in Flavored Gauge Mediation Models with Discrete Non-Abelian Symmetries

    Lisa L. Everett🇺🇸 · Todd S. Garon🇺🇸 · Ariel B. Rock🇺🇸

    We explore the generation of fermion masses and quark mixing angles within flavored gauge mediation models of supersymmetry breaking in which the Higgs and messenger doublets are connected by a discrete non-Abelian symmetry. In this framework, the Higgs-messenger symmetry, which we take for concreteness to be the discrete group , also plays the role of a (partial) family symmetry. We investigate mechanisms for generating mass hierarchies for the lighter quark generations and generating the Cabibbo angle within this class of models. While perturbations of the couplings at the renormalizable level do not lead to phenomenologically viable quark mixing parameters, we show that the Cabibbo angle can be generated via couplings at the nonrenormalizable level and explore the phenomenological implications of this scenario.

    hep-phPRD(2020)·4 citations
  27. 29*

    Beyond brane-Higgs regularisation: clarifying the method and model

    Andrei Angelescu🇺🇸 · Ruifeng Leng🇫🇷 · Grégory Moreau🇫🇷 · Florian Nortier🇫🇷

    The class of higher-dimensional scenarios, based on a brane-localised Higgs boson coupled to bulk fermions, can address both the flavour puzzle and gauge hierarchy problem. A key question arises due to the possibility of fermion profile discontinuities at the Higgs boundary: how to calculate rigorously the fermion mass spectrum and effective four-dimensional (4D) Yukawa couplings? We show that the proper treatment, leading to physically consistent solutions, does not rely on any Higgs peak regularisation but requires the presence of certain Bilinear Brane Terms (BBT). In particular, no profile jump should appear and the Higgs regularisations turn out to suffer from mathematical discrepancies reflected in two non-commutativities of calculation steps debated in the literature. The introduction of BBT can by replaced by vanishing conditions for probability currents at the considered flat interval boundaries. Both contribute to the definition of the field geometrical configuration of the model, even in the free case. The BBT could allow to elaborate an ultra-violet origin of the chiral nature of the Standard Model and of its chirality distribution among quarks/leptons. The current conditions are implemented via essential boundary conditions to be contrasted with the natural boundary conditions derived from the action variation. All these theoretical conclusions are confirmed in particular by the converging exact results of the 4D versus 5D approaches. The analysis is completed by a description of the appropriate energy cut-off procedure. The new calculation methods presented, implying the independence of excited fermion masses and 4D Yukawa couplings on the 'wrong-chirality' Yukawa terms, have impacts on phenomenological results like the relaxing of previously obtained strong bounds on Kaluza-Klein masses induced by flavour changing reactions generated through exchanges of the Higgs field.

    hep-phhep-thPRD(2020)·9 citations
  28. 30*

    KATRIN bound on 3+1 active-sterile neutrino mixing and the reactor antineutrino anomaly

    C. Giunti🇮🇹 · Y.F. Li🇨🇳 · Y.Y. Zhang🇨🇳

    We present the bounds on 3+1 active-sterile neutrino mixing obtained from the first results of the KATRIN experiment. We show that the KATRIN data extend the Mainz and Troitsk bound to smaller values of for large mixing and improves the exclusion of the large- solution of the Huber-Muller reactor antineutrino anomaly. We also show that the combined bound of the Mainz, Troitsk, and KATRIN tritium experiments and the Bugey-3, NEOS, PROSPECT, and DANSS reactor spectral ratio measurements exclude most of the region in the () plane allowed by the Huber-Muller reactor antineutrino anomaly. Considering two new calculations of the reactor neutrino fluxes, we show that one, that predicts a lower neutrino flux, is in agreement with the tritium and reactor spectral ratio measurements, whereas the other leads to a larger tension than the Huber-Muller prediction. We also show that the combined reactor spectral ratio and tritium measurements disfavor the Neutrino-4 indication of large active-sterile mixing. We finally discuss the constraints on the gallium neutrino anomaly.

    hep-phhep-exJHEP(2020)·29 citations
  29. 31*

    The Minimal UV-induced Effective QCD Axion Theory

    Yu Gao🇨🇳 · Tianjun Li🇨🇳 · Qiaoli Yang🇨🇳

    The characteristic axion couplings could be generated via effective couplings between the Standard Model (SM) fermions to a pseudo-Goldstone from a high-scale Peccei-Quinn (PQ) symmetry breaking. Assuming that the UV-induced effective operators generate necessary couplings before the PQ symmetry breaking, and any low-scale couplings to the SM are restricted to the Yukawa sector, three minimal natural scenarios can be formulated, which provides a connection between the QCD-axions and mediators at the GUT/string scales. We find that the PQ symmetry breaking scale could be about GeV, higher than the classical QCD dark matter axion window but possible if the anthropic window is considered. We also propose an experiment to probe such scenarios. If the dark matter axion is discovered, they might suggest that we live in an atypical Hubble volume.

    hep-phastro-ph.COMod.Phys.Lett.A(2022)·3 citations
  30. 32*

    Determination of Chemical Freeze-out Parameters from Net-kaon Fluctuations at RHIC

    Jamie M. Stafford🇺🇸 · Paolo Alba🇩🇪 · Rene Bellwied🇺🇸 · Valentina Mantovani-Sarti🇩🇪 · Jacquelyn Noronha-Hostler🇺🇸 · Paolo Parotto🇺🇸 · Israel Portillo-Vazquez🇺🇸 · Claudia Ratti🇺🇸

    We calculate the mean-over-variance ratio of the net-kaon fluctuations in the Hadron Resonance Gas (HRG) Model for the five highest energies of the RHIC Beam Energy Scan (BES) for different particle data lists. We compare these results with the latest experimental data from the STAR collaboration in order to extract sets of chemical freeze-out parameters for each list. We focused on the PDG2012 and PDG2016+ particle lists, which differ largely in the number of resonant states. Our analysis determines the effect of the amount of resonances included in the HRG on the freeze-out conditions.

    hep-phnucl-thSpringer Proc.Phys.(2020)·5 citations
  31. 33*

    The gluon-fusion production of Higgs boson pair: NLO QCD corrections and top-quark mass effects

    Long-Bin Chen🇨🇳 · Hai Tao Li🇺🇸 · Hua-Sheng Shao🇫🇷 · Jian Wang🇨🇳

    The Higgs boson pair production via gluon fusion at high-energy hadron colliders, such as the LHC, is vital in deciphering the Higgs potential and in pinning down the electroweak symmetry breaking mechanism. We carry out the next-to-next-to-next-to-leading order (NLO) QCD calculations in the infinite top-quark mass limit and present predictions for both the inclusive and differential cross sections, albeit the differential distributions other than the invariant mass distribution of the Higgs boson pair are approximated at NLO. Such corrections are indispensable in stabilising the perturbative expansion of the cross section in the strong coupling . At the inclusive level, the scale uncertainties are reduced by a factor of four compared with the next-to-next-to-leading order (NNLO) results. Given that the inclusion of the top-quark mass effects is essential for the phenomenological applications, we use several schemes to incorporate the NLO results in the infinite top-quark mass limit and the next-to-leading order (NLO) results with full top-quark mass dependence, and present theoretical predictions for the (differential) cross sections in the proton-proton collisions at the centre-of-mass energies and TeV. Our results provide one of the most precise theoretical inputs for the analyses of the Higgs boson pair events.

    hep-phhep-exJHEP(2020)·96 citations
  32. 34*

    Empirical estimate of the unpolarized dihadron fragmentation functions

    Dong Jing Yang🇹🇼 · Chung Wen Kao🇹🇼 · Seung-il Nam🇰🇷

    We estimate the unpolarized dihadron fragmentation functions (uDiFFs) within the framework of the single-cascade jet algorithm. We first obtain the elementary fragmentation functions generating the single hadron fragmentation functions by using the single-cascade jet algorithm. These results are very close to the empirical parametrizations of the single hadron fragmentation functions which are extracted from the experimental data of the annihiliation and semi-inclusive deeply inelastic scatterings (SIDIS). We then use those elementary fragmentation functions to generate the dihadron fragmentation functions by the help of the single-cascade jet algorithm again. The comparison between our empirical results with the results of the Nambu-Jona-Lasinio model and the non-local chiral quark model (NLQM) is also presented.

    hep-ph0 citations
  33. 35*

    Gluon TMDs and Opportunities at an EIC

    Cristian Pisano🇮🇹

    We show how transverse momentum dependent gluon distributions could be probed at a future Electron-Ion Collider through the analysis of transverse momentum spectra and azimuthal asymmetries in the inclusive electroproduction of and mesons. The maximum values of these asymmetries, obtained in a model-independent way by imposing the positivity bounds of the polarized gluon distributions, suggest the feasibility of the proposed measurements.

    hep-ph0 citations
  34. 36*

    Impact of a colored vector resonance on the collider constraints for top-like top partner

    Sayan Dasgupta🇮🇳 · Santosh Kumar Rai🇮🇳 · Tirtha Sankar Ray🇮🇳

    In this work we reappraise the collider constraints from leptonic final states on the vectorlike colored top partners taking into account the impact of exotic colored vector resonances. These colored states are intrinsic to a broad class of models that employ a strongly interacting sector to drive electroweak symmetry breaking. We translate the recent results in the {\sl monolepton + jets} channel as reported by CMS with an integrated luminosity of 35.8 fb, and {\sl dilepton + jets} and {\sl trilepton + jets} channels as reported by ATLAS with an integrated luminosity of 36.1 fb to constrain the parameter space of these class of models. We also comment on the impact and modification of the derived constraints due to the expected fatness of the colored vector resonance, when accounted for beyond the narrow-width approximation by simulating the full one-particle irreducible resummed propagator.

    hep-phPRD(2020)·9 citations
  35. 37*

    Resummed inclusive cross-section in ADD model at NLL+NNLO

    Goutam Das🇩🇪 · M. C. Kumar🇮🇳 · Kajal Samanta🇮🇳

    We present three loop soft-plus-virtual (SV) corrections to the spin-2 production at the Large Hadron Collider (LHC). For this calculation, we make use of the recently computed quark and gluon three loop form factors for the spin-2 production, the universal soft-collinear coefficients as well as the mass factorization kernels. The SV coefficients are presented up to next-to-next-to-next-to leading order (NLO). We also use these coefficients at three loops to compute the resummed prediction for inclusive cross-section to next-to-next-to-next-to leading logarithmic accuracy (NLL) matched to next-to-next-to leading order (NNLO). We use the standard technique to derive the Mellin N-dependent coefficients and also the N-independent coefficients to achieve the resummation using the minimal prescription matching procedure. Considering the spin-2 propagator in the large extra dimensional (ADD) model, we also study the numerical impact of these three-loop SV corrections as well as the resummed predictions on the di-lepton invariant mass distribution at the 13 TeV LHC. We find that the conventional scale uncertainties in the NNLO+NLL resummed results substantially get reduced to as low as 2\% in the high invariant mass region. We also estimate the PDF uncertainties in our predictions that will be useful in the experimental searches for large extra dimensions.

    hep-phJHEP(2020)·17 citations
  36. 38*

    Effective Field Theory Perspective on Next-to-Minimal Composite Higgs

    Yong-Hui Qi🇨🇳 · Jiang-Hao Yu🇨🇳 · Shou-Hua Zhu🇨🇳

    We study both the CP-even and CP-odd effective chiral Lagrangians of next minimal composite Higgs model {with symmetry breaking pattern depicted by the coset } through the sigma/omega decomposition, in which the Goldstone matrix of the coset is decomposed in terms of the standard model Higgs doublet and an additional scalar singlet at the electroweak scale. The effective Lagrangian is described by the electroweak chiral Lagrangian up to order, with a function dependence on the Higgs boson and new scalar , named Higgs function. This function in the effective Lagrangian incorporates the Higgs non-linearity or vacuum misalignment effects in the next minimal composite Higgs model, due to the Riemann curvature on the Nambu-Goldstone bosons scalar manifold, leads to various Higgs couplings deviated from the standard model ones, and also indicates the relations among different Higgs couplings in the low energy. Matching to the Higgs effective field theory below the electroweak scale, we obtain various low energy observables such as the electroweak oblique parameters, anomalous triple and quartic gauge couplings, anomalous couplings of Higgs to gauge bosons, in which the Higgs non-linearity effects are encoded in the ratio of the electroweak scale and the new physics scale.

    hep-phPRD(2021)·10 citations
  37. 39*

    Parity and the origin of neutrino mass

    Goran Senjanovic🇮🇹 · Vladimir Tello🇮🇹

    In the LHC era the issue of the origin and nature of neutrino mass has attained a new meaning and a renewed importance. The growing success of the Higgs-Weinberg mechanism behind the charged fermion masses paves the way for the question of neutrino mass. We have shown recently how the spontaneous breaking of parity in the context of the minimal Left-Right Symmetric Model allows to probe the origin of neutrino mass in complete analogy with the charged fermions masses in the Standard Model. We revisit here this issue and fill in the gaps left in our previous work. In particular we discuss a number of different mathematical approaches to the problem of disentangling the seesaw mechanism and show how a unique analytical solution emerges. Most important, we give all the possible expressions for the neutrino Dirac mass matrix for general values of light and heavy neutrino mass matrices. In practical terms what is achieved is an untangling of the seesaw mechanism with clear and precise predictions testable at hadron colliders such as LHC.

    hep-phhep-exInt.J.Mod.Phys.A(2020)·19 citations
  38. 40*

    Braneworld Effective Field Theories--Holography, Consistency and Conformal Effects

    Sylvain Fichet🇧🇷

    Braneworld theories are often described as low-energy effective field theories (EFTs) featuring an infinitely thin 3-brane and 4D fields exactly localized on it. We investigate whether an exactly localized braneworld can arise as a limit of a theory of 5D fields. Using a holographic formalism we argue that such limit does not exist in the presence of gravity, therefore implying a discontinuity in the space of EFTs. We then present specific models involving exactly localized fields in which inconsistencies appear, which are solved when fields are taken as quasilocalized. Part of our arguments rely on conjectures from the "swampland" program. Our investigation motivates braneworld EFTs built from 5D fields, i.e. quasilocalized braneworlds. Observable effects from quasilocalization are significant for warped braneworlds such as Randall-Sundrum II (RSII), and are reminiscent of a conformal hidden sector. Focusing on the gauge-gravity sector we show that manifestations of the quasilocalized warped braneworld include i) an anomalous running of SM gauge couplings ii) a conformal contribution to SM gauge boson scattering induced by 5D gravity. Constraining these effects puts an upper bound on the 5D EFT cutoff, implying that the warped braneworld hypothesis could---at least in principle---be tested completely.

    hep-thhep-phJHEP(2020)·44 citations
  39. 41*

    Hadron properties in a nuclear medium and effective nuclear force from quarks: the quark-meson coupling model

    K. Tsushima🇧🇷

    We give a short review of the quark-meson coupling (QMC) model, the quark-based model of finite nuclei and hadron interactions in a nuclear medium, highlighting on the relationship with the Skyrme effective nuclear forces. The model is based on a mean field description of nonoverlapping nucleon MIT bags bound by the self-consistent exchange of Lorentz-scalar-isoscalar, Lorentz-vector-isoscalar, and Lorentz-vector-isovector meson fields directly coupled to the light quarks up and down. In conventional nuclear physics the Skyrme effective forces are very popular, but, there is no satisfactory interpretation of the parameters appearing in the Skyrme forces. Comparing a many-body Hamiltonian generated by the QMC model in the zero-range limit with that of the Skyrme force, it is possible to obtain a remarkable agreement between the Skyrme force and the QMC effective interaction. Furthermore, it is shown that 3-body and higher order N-body forces are naturally included in the QMC-generated effective interaction.

    nucl-thhep-exhep-phnucl-exAAPPS (Association of Asia Pacific Physic…·3 citations
  40. 42*

    Hunting dark matter in galaxy clusters with non-thermal electrons

    Geoff Beck🇿🇦

    The electron population inferred to be responsible for the mini-halo within the Ophiuchus galaxy cluster is a steep power-law in energy with a slope of . This is substantially different to that predicted by dark matter annihilation models. In this work we present a method of indirect comparison between the observed electron spectrum and that predicted for indirect dark matter emissions. This method utilises differences in the consequences of a given electron distribution on the subsequent spectral features of synchrotron emissions. To fully exploit this difference, by leveraging the fact that the peak and cut-off synchrotron frequencies are substantially different to hard power-law cases for WIMP masses above GeV, we find that we need Jy sensitivities at frequencies above 10 GHz while being sensitive to arcminute scales. We explore the extent to which this electron spectrum comparison can be validated with the up-coming ngVLA instrument. We show that, with the ngVLA, this method allows us to produce far stronger constraints than existing VLA data, indeed these exceed the Fermi-LAT dwarf searches in a wide variety of annihilation channels and for all studied magnetic field scenarios.

    astro-ph.HEhep-phMNRAS(2020)·0 citations
  41. 43*

    Inflation with very small tensor-to-scalar ratio

    Koichi Hirano🇯🇵

    We have investigated inflation models that predict a very small value of the tensor-to-scalar ratio, . The spectral index , and the tensor-to-scalar ratio , are strictly constrained by the Planck data. and are sensitive to the shape and magnitude of the inflaton potential, respectively.The constraints by the Planck 2018 data combined with other cosmological observations are compared with the predictions from the inflation models regarding and . Furthermore, we discuss the comparison of future tensor-to-scalar ratio data with predictions from the inflation models with a focus on part of the quantum fluctuation origin.

    astro-ph.COgr-qchep-phhep-thAstrophys.Space Sci.(2023)·5 citations
  42. 44*

    Color Confinement and Supersymmetric Properties of Hadron Physics from Light-Front Holography

    Stanley J. Brodsky🇺🇸

    I review applications of superconformal algebra. light-front holography, and an extended form of conformal symmetry to hadron spectroscopy and dynamics. QCD is not supersymmetrical in the traditional sense -- the QCD Lagrangian is based on quark and gluonic fields -- not squarks nor gluinos. However, its hadronic eigensolutions conform to a representation of superconformal algebra. and provide a unified Regge spectroscopy of meson, baryon, and tetraquarks with a universal Regge slope. The pion eigenstate is composite but yet has zero mass for Light-Front Holography also predicts the form of the nonperturbative QCD running coupling in agreement with the effective charge determined from measurements of the Bjorken sum rule. One also obtains viable predictions for hadron dynamics such as spacelike and timelike hadronic form factors, structure functions, distribution amplitudes, and transverse momentum distributions. The combined approach of light-front holography and superconformal algebra also provides insight into the origin of the QCD mass scale and color confinement. A key tool is the dAFF principle which shows how a mass scale can appear in the Hamiltonian and the equations of motion while retaining the conformal symmetry of the action. When one applies the dAFF procedure to chiral QCD, a mass scale appears which determines the hadron masses in the absence of the Higgs coupling. The result is an extended conformal symmetry which has a conformally invariant action even though an underlying mass scale appears in the Hamiltonian. Although conformal symmetry is strongly broken by the heavy quark mass, the supersymmetric mechanism, which transforms mesons to baryons (and baryons to tetraquarks), still holds and gives remarkable mass degeneracies across the spectrum of light, heavy-light and double-heavy hadrons.

    hep-thhep-phPoS(2020)·2 citations
  43. 45*

    Search for dark matter at colliders

    Oliver Buchmueller🇬🇧 · Caterina Doglioni🇸🇪 · Lian-Tao Wang🇺🇸

    Multiple astrophysical and cosmological observations show that the majority of the matter in the universe is non-luminous. It is not made of known particles, and it is called dark matter. This is one of the few pieces of concrete experimental evidence of new physics beyond the Standard Model. Despite decades of effort, we still know very little about the identity of dark matter; it remains one of the biggest outstanding mysteries facing particle physics. Among the numerous proposals to explain its nature, the Weakly Interacting Massive Particle (WIMP) scenario stands out. The WIMP scenario is based on a simple assumption that dark matter is in thermal equilibrium in the early hot universe, and that the dark matter particles have mass and interactions not too different from the massive particles in the Standard Model. Testing the WIMP hypothesis is a focus for many experimental searches. A variety of techniques are employed including the observation of WIMP annihilation, the measurement of WIMP-nucleon scattering in terrestrial detectors, and the inference of WIMP production at high energy colliders. In this article, we will focus on the last approach, and in particular on WIMP dark matter searches at the Large Hadron Collider. Authors note: this paper (and references therein) correspond to the version that was submitted to the joint issue of Nature Physics and Nature Astronomy in January 2017.

    hep-exhep-phNat.Phys.(2017)·145 citations
  44. 46*

    Single-field inflation in models with an term

    Ignatios Antoniadis🇫🇷 · Alexandros Karam🇪🇪 · Angelos Lykkas🇬🇷 · Thomas Pappas🇬🇷 · Kyriakos Tamvakis🇬🇷

    We present two cases where the addition of the term to an inflationary model leads to single-field inflation instead of two-field inflation as is usually the case. In both cases we find that the effect of the term is to reduce the value of the tensor-to-scalar ratio .

    gr-qcastro-ph.COhep-phPoS(2020)·18 citations
  45. 48*

    Influence of magnetic field on beta-processes in supernova matter

    Alexandra Dobrynina🇷🇺 · Igor Ognev🇷🇺

    An influence of a magnetic field on beta-processes is investigated under conditions of a core-collapse supernova. For realistic magnetic fields reachable in astrophysical objects we obtain simple analytical expressions for reaction rates of beta-processes as well as the energy and momentum transferred from neutrinos and antineutrinos to the matter. Based on the results of one-dimensional simulations of a supernova explosion, we found that, in the magnetic field with the strength G, the quantities considered are modified by a few percents only and, as a consequence, the magnetic-field effects can be safely neglected, considering neutrino interaction and propagation in a supernova matter. The analytical results can be also applied for accretion discs formed at a merger of compact objects in close binary systems.

    astro-ph.HEhep-phPRD(2020)·5 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.