PaperPanorama

HEP Phenomenology·hep-ph

Wed·Jul 6, 2022

30 papers24 primary·6 cross-listed·reconstructed*

  1. 01*

    Bounds on right-handed neutrino parameters from observable leptogenesis

    Pilar Hernandez🇪🇸 · Jacobo Lopez-Pavon🇪🇸 · Nuria Rius🇪🇸 · Stefan Sandner🇪🇸

    We revisit the generation of a matter-antimatter asymmetry in the minimal extension of the Standard Model with two singlet heavy neutral leptons (HNL) that can explain neutrino masses. We derive an accurate analytical approximation to the solution of the complete linearized set of kinetic equations, which exposes the non-trivial parameter dependencies in the form of parameterization-independent CP invariants. The identification of various washout regimes relevant in different regions of parameter space sheds light on the relevance of the mass corrections in the interaction rates and clarifies the correlations of baryogenesis with other observables. In particular, by requiring that the measured baryon asymmetry is reproduced, we derive robust upper or lower bounds on the HNL mixings depending on their masses, and constraints on their flavour structure, as well as on the CP-violating phases of the PMNS mixing matrix, and the amplitude of neutrinoless double-beta decay. We also find certain correlations between low and high scale CP phases. Especially emphasizing the testable part of the parameter space we demonstrate that our findings are in very good agreement with numerical results. The methods developed in this work can help in exploring more complex scenarios.

    hep-phastro-ph.COJHEP(2022)·47 citations
  2. 02*

    Search for Leptophilic Dark Matter at the LHeC

    Guo-yuan Huang🇩🇪 · Sudip Jana🇩🇪 · Alvaro S. de Jesus🇧🇷 · Farinaldo S. Queiroz🇧🇷 · Werner Rodejohann🇩🇪

    The Large Hadron electron Collider (LHeC) has been designed to push the field of deep inelastic scattering to the high energy and intensity frontier using an intense electron beam with a proton beam from the High Luminosity-Large Hadron Collider. However, LHeC is also a great laboratory for new physics. In this work, we propose a search for dark matter that couples with leptons. This may yield + missing energy and + missing energy signals that can be potentially observed through simple missing-energy cuts that suppress the Standard Model background. Considering direct dark matter detection and LHC constraints, we show that LHeC can indeed discover a weak scale dark matter fermion for masses up to 350 GeV, which reproduces the correct relic density, and has interesting implications for lepton flavor violation.

    hep-phhep-exJ.Phys.G(2023)·5 citations
  3. 03*

    Reevaluation of heavy-fermion-induced electron EDM at three loops

    Yohei Ema🇺🇸 · Ting Gao🇺🇸 · Maxim Pospelov🇺🇸

    Motivated by improved limits on electric dipole moments (EDMs), we revisit the three-loop light-by-light mechanism that transmits violation from a heavy fermion to a light one. Applying it to the electron EDM induced by EDMs of heavier flavors, we find additional contributions at the order or that were missing before and that make the result 1.4 times larger. Consequently we improve bounds on the tau EDM, and update indirect limits on the muon EDM as well as charm and bottom quark color EDMs.

    hep-phhep-exnucl-thPLB(2022)·17 citations
  4. 04*

    Exploring the SMEFT at dimension-8 with Drell-Yan transverse momentum measurements

    Radja Boughezal🇺🇸 · Yingsheng Huang🇺🇸 · Frank Petriello🇺🇸

    We demonstrate that measurements of the neutral-current Drell-Yan transverse momentum distribution binned in invariant mass are sensitive to unexplored dimension-8 parameters of the Standard Model Effective Field Theory (SMEFT). These distributions are sensitive to four-fermion operators with additional QCD field strength tensors. The determination of the Wilson coefficients of these operators provides a useful diagnostic tool that distinguishes possible ultraviolet completions of the SMEFT. We study how well these effects can be probed by current LHC data, and explore the sensitivity of the future high-luminosity LHC (HL-LHC) to these operators. We find that the HL-LHC data has the potential to strongly probe this sector of the SMEFT.

    hep-phPRD(2022)·43 citations
  5. 05*

    Can the muon anomalous magnetic moment and the anomalies be simultaneously explained in a minimally extended model?

    H. Lee🇵🇱 · A. E. Cárcamo Hernández🇨🇱

    We analyze the implications of an extended 2HDM theory in quark masses and mixings, electroweak precision tests, charged lepton flavor violating (CLFV) decays, neutrino trident production, B meson, muon and W anomalies. In the extended 2HDM theory considered in this work, the SM gauge symmetry is enlarged by the local symmetry, whereas its scalar and fermion sectors are augmented by the inclusion of a gauge singlet scalar and vectorlike fermions, respectively. Within the framework of this model, we determine the allowed ranges of the gauge boson mass consistent with the constraints arising from neutrino trident production, anomaly, meson oscillation. We conclude the and muon anomalies cannot be simultaneously explained by the same new physics under all the constraints. Besides that, we found that the new physics sources, the and non SM scalars cannot be connected via the scalar potential. Furthermore, we have found that the model under consideration can successfully comply with the constraints arising from oblique parameters as well as with the mass and muon anomalies. In particular we found that the muon anomaly, whose dominant contribution arises from the one loop level scalar exchange, can be successfully accommodated within the experimentally allowed range.

    hep-ph5 citations
  6. 06*

    Triple (and quadruple) soft-gluon radiation in QCD hard scattering

    Dimitri Colferai

    We consider the radiation of three soft gluons in a generic process for multiparton hard scattering in QCD. In the soft limit the corresponding scattering amplitude has a singular behaviour that is factorized and controlled by a colorful soft current. We compute the tree-level current for triple soft-gluon emission from both massless and massive hard partons. The three-gluon current is expressed in terms of maximally non-abelian irreducible correlations. We compute the soft behaviour of squared amplitudes and the colour correlations produced by the squared current. The radiation of one and two soft gluons leads to colour dipole correlations. Triple soft-gluon radiation produces in addition colour quadrupole correlations between the hard partons. We examine the soft and collinear singularities of the squared current in various energy ordered and angular ordered regions. We discuss some features of soft radiation to all-loop orders for processes with two and three hard partons. Considering triple soft-gluon radiation from three hard partons, colour quadrupole interactions break the Casimir scaling symmetry between quarks and gluons. We also present some results on the radiation of four soft gluons from two hard partons, and we discuss the colour monster contribution and its relation with the violation (and generalization) of Casimir scaling. We also compute the first correction of to the eikonal formula for multiple soft-gluon radiation with strong energy ordering from two hard gluons.

    hep-phPoS(2022)·1 citation
  7. 07*

    Inclusive photoproduction at the ILC within the framework of non-relativistic QCD

    Xi-Jie Zhan🇨🇳 · Xing-Gang Wu🇨🇳 · Xu-Chang Zheng🇨🇳

    Based on the non-relativistic quantum chromodynamics factorization framework, we study the inclusive photoproduction at the future high energy collider, International Linear Collider(ILC), where the initial photons come from the back-scattering of laser and electron (positron). The intermediate states, ,,,, and resolved photoproduction processes are considered. Numerical results show that the cross section of photoproduction at the ILC could be very large, and the single resolved process via intermediate state dominates primarily the production. We also present various kinematic distributions for photoproduction. Combining the high luminosity of the collision, photoproduction at the ILC shall provide a good platform to test the NRQCD factorization.

    hep-phJHEP(2022)·5 citations
  8. 08*

    boson decays and Higgs boson decays with lepton flavor violation in a extension of the MSSM

    Yi-Tong Wang🇨🇳 · Shu-Min Zhao🇨🇳 · Tong-Tong Wang🇨🇳 · Xi Wang🇨🇳 · Xin-Xin Long🇨🇳 · Jiao Ma🇨🇳 · Tai-Fu Feng🇨🇳

    SSM is the extension of the minimal supersymmetric standard model (MSSM) and its local gauge group is . We study lepton flavor violating (LFV) decays (, , and ) and (, , and ), in this model. In the numerical results, the branching ratios of are from to and the branching ratios of are from to , which can approach the present experimental upper bounds. Based on the latest experimental data, we analyze the influence of different sensitive parameters on the branching ratio, and make reasonable predictions for future experiments. The main sensitive parameters and LFV sources are the non-diagonal elements corresponding to the initial and final generations of leptons, which can be seen from the numerical analysis.

    hep-phPRD(2022)·8 citations
  9. 09*

    Revisiting sterile neutrino dark matter in gauged model

    Shintaro Eijima🇯🇵 · Osamu Seto🇯🇵 · Takashi Shimomura🇯🇵

    We reexamine sterile neutrino dark matter in gauged model. Improvements have been made by tracing and careful evaluation of the evolution of the number densities of sterile neutrinos and extra neutral gauge bosons . As a result, the cosmologically-interesting gauge coupling of for freeze-in sterile neutrinos turns out to be smaller than the values reported in the literature. This avoids the overproduction of so that it is consistent with the big bang nucleosynthesis and the cosmic microwave background constraints on the effective number of neutrino species. Similarly, the free-streaming length constraints exclude a large parameter space derived in previous studies. In addition to known freeze-in pair production of from the standard model fermion pairs, we find the case that is dominantly produced from a pair of at the temperature characterized by the breaking scalar mass. Thus, the naive truncation of the scalar contribution made in the literature is not valid.

    hep-phastro-ph.COPRD(2022)·15 citations
  10. 10*

    Lepton-flavor violation and lepton-flavor-universality violation in b and c decays

    Diego Guadagnoli🇫🇷 · Patrick Koppenburg🇳🇱

    Two topics have recently risen to prominence within the ongoing searches of beyond-Standard Model effects in and decays: observables that test lepton flavor universality (LFU) as well as lepton flavor violation (LFV). A coherent set of measurements suggests non-standard LFU effects. General arguments relate LFU to LFV, and the observed size of the former gives hope of observable signals for the latter. We attempt a comprehensive discussion of both theoretical and experimental aspects of these tests. The main final message is that all the instruments necessary to fully establish the putative new effects are at hand, thanks to running experiments and their upgrades. Therefore this subject stands concrete chances to usher genuinely unexpected discoveries.

    hep-phhep-exAnn.Rev.Nucl.Part.Sci.(2023)·22 citations
  11. 11*

    Recent experimental progress on probing Lorentz Violation in pure gravity for d=6

    Tao Jin🇨🇳 · Jia-Rui Li🇨🇳 · Yu-Jie Tan🇨🇳 · Cheng-Gang Shao🇨🇳

    Short-range experiment with striped design of the test and source masses offers uniquely sensitive probes for Lorentz Violation. In our previous work, we proposed to combine the horizontally and vertically striped experiments to constrain the violating parameters. Here, we further point out adopting the vertically striped structure with the experimental setup placed at two azimuth angles, which has more experimental operability. For the experiment, we have completed the assembly and measurement of the torsion pendulum.

    hep-ph2 citations
  12. 12*

    2B or not 2B, a study of bottom-quark-philic semi-visible jets

    Deepak Kar🇿🇦 · Wandile Nzuza🇿🇦 · Sukanya Sinha🇿🇦

    Semi-visible jets arise in strongly interacting dark sector, resulting in jets overlapping with the missing transverse momentum direction. The implementation of semi-visible jets is done using the Pythia Hidden Valley module to mimic the QCD sector showering in so-called dark shower. In this work, only heavy flavour Standard Model quarks are considered in dark shower, resulting in a much less ambiguous collider signature of semi-visible jets compared to the democratic production of all five quark flavours in dark shower. The constraints from available searches on this signature are presented, and it is shown the signal reconstruction can be improved by using variable-radius jets. Finally a search strategy is suggested.

    hep-phhep-exSciPost Phys.Core(2024)·8 citations
  13. 13*

    The Anomalous Magnetic Moment of the Muon: Beyond the Standard Model via Chiral Enhancement

    Andreas Crivellin🇨🇭 · Martin Hoferichter🇨🇭

    The anomalous magnetic moment of the muon displays a tension with the Standard-Model prediction, if data are used for hadronic vacuum polarization. In these proceedings we review possible explanations of this anomaly in terms of heavy new particles. As the necessary effect is of the order of the electroweak Standard-Model contribution, viable explanations with TeV-scale physics must involve an enhancement factor; in particular, one can obtain the chirality flip of the dipole operator via a sizable coupling to the Higgs doublet instead of the small muon Yukawa coupling. Such Standard-Model extensions then also predict effects in Higgs and -boson decays to muons, with details depending on the representations of the new particles. We first review the general case of chirally enhanced new physics, before discussing in more detail the concrete example of leptoquark models.

    hep-phhep-exnucl-thNuovo Cim.C(2022)·5 citations
  14. 14*

    An Approach to Anomalies

    Claudio Corianò🇮🇹 · Paul H. Frampton🇮🇹

    The most efficient way to extend the Standard Model of particle theory so that it accommodates the observed B anomalies is the hypothesis of a leptoquark which is a color-triplet weak-singlet boson with electric charge . We point out that SU(15) grand unification with a scalar leptoquark in the adjoint representation gives a natural explanation for the violation of lepton flavour universality. We briefly discuss biquarks and bileptons.

    hep-ph1 citation
  15. 15*

    Partial wave analysis of two-body decay with helicity formalism

    Hang Chen🇨🇳

    In this paper, We find that the angular distribution of two-body decay and scattering process that can be studied by introducing the helicity method.It has been argued that the angular distribution only depends on magnitude of the decaying amplitude which final particle momentum is along the axis. Therefore, when calculating the angular distribution,we only need to know the helicity amplitude in the direction. At the same time, we also discuss the symmetry of physical processes, such as parity and time inversion transformation and so on. The effects of these symmetric transformations on the helicity state and the canonical states are studied in this paper. When it is applied to two body decay process, the symmetry of the amplitude can be obtained by helicity method. In addition, we also introduce the density matrix to study the polarization of the final state particles, and discuss some inherent symmetries of the density matrix. When we study the polarization and angular distribution of final state particles, we can use these properties to simplify density matrix without knowing all the elements of the density matrix.Then we find that there is a close relationship between the partial wave\cite{2003Tree}coupling constants and the angular distribution parameters, indicating that these coupling constants can be obtained by experimental fitting to data.In a word, the properties of two body decay and two body cascade decay process can be analyzed by helicity method, which has a very good application .

    hep-phhep-th0 citations
  16. 16*

    Quasi-two-body decays in perturbative QCD approach

    Zhi-Qing Zhang🇨🇳 · Yan-Chao Zhao🇨🇳 · Zhi-Lin Guan🇨🇳 · Zhi-Jie Sun🇨🇳 · Zi-Yu Zhang🇨🇳 · Ke-Yi He🇨🇳

    In this work we study the quasi-two-body decays in the perturbative QCD (PQCD) approach. The two-meson distribution amplitudes (DAs) are introduced to describe the final state interactions of the pair, which involve the time-like form factors and the Gegenbauer polynomials. We calculate the CP averaged branching ratios for the decays . Our results are in agreement with the new update data measured by Belle II, which suggests these quasi-two-body decays are more appropriate to be analyzed in three-body framework than in the two-body one. We also predict the direct CP-violation asymmetries for the considered decay modes and find that is small and less than in magnitude, while is larger and can arrive at a few percent. Our predictions can be tested by the future B meson experiments.

    hep-phCPC(2022)·7 citations
  17. 17*

    Boost Asymmetry of the diboson productions in pp collisions

    Siqi Yang🇨🇳 · Mingzhe Xie🇨🇳 · Yao Fu🇨🇳 · Zihan Zhao🇨🇳 · Minghui Liu🇨🇳 · Liang Han🇨🇳 · Tie-Jiun Hou🇨🇳 · C.-P. Yuan🇺🇸

    We propose the boost asymmetry of the diboson productions in pp collisions as a new experimental observable, which can provide unique information on the proton structure. The boost asymmetry rises as the difference in the kinematics of the two bosons, that are coupled to the two different quark and antiquark initial states, respectively, and thus reflects different features of the quark and antiquark parton densities. By comparing the kinematics of the two bosons, such as the boson energy or rapidity, the diboson events with antiquark having higher energy than quark can be distinguished from those with quark having higher energy than antiquark. This would provide unique information in some special parton momentum fraction regions, which cannot be directly proved by current W and Z measurements at the Large Hadron Collider or other deep inelastic scattering experients.

    hep-phPRD(2022)·9 citations
  18. 18*

    Is the the heavy quark spin symmetry partner of the ?

    Meng-Lin Du🇪🇸 · Eliecer Hernández🇪🇸 · Juan Nieves🇪🇸

    We use a heavy quark effective theory scheme, where only and perturbative QCD short distance corrections are neglected, to study the matrix elements of the scalar, pseudoscalar, vector, axial-vector and tensor currents between the ground state and the odd parity charm and resonances. We show that in the near-zero recoil regime, the scheme describes reasonably well, taking into account uncertainties, the results for the 24 form-factors obtained in lattice QCD (LQCD) just in terms of only 4 Isgur-Wise (IW) functions. We also find some support for the possibility that the and resonances might form a heavy-quark spin symmetry (HQSS) doublet. However, we argue that the available LQCD description of these two resonances is not accurate enough to disentangle the possible effects of the and thresholds, located only a few MeV above their position, and that it cannot be ruled out that these states are not HQSS partners. Finally, we study the ratio of the Standard Model differential semileptonic decay widths, with the momentum transferred between the initial and final hadrons. We provide a natural explanation for the existence of large deviations, near the zero recoil, of this ratio from 1/2 (value predicted in the infinite heavy quark mass limit, assuming that the and are the two members of a HQSS doublet) based on S-wave contributions to the decay amplitude driven by a sub-leading IW function.

    hep-phPRD(2022)·10 citations
  19. 19*

    Les Houches 2021: Physics at TeV Colliders: Report on the Standard Model Precision Wishlist

    Alexander Huss🇨🇭 · Joey Huston🇺🇸 · Stephen Jones🇬🇧 · Mathieu Pellen🇩🇪

    Les Houches activities in 2021 were truncated due to the lack of an in-person component. However, given the rapid progress in the field, and the restart of the LHC, we wanted to continue the bi-yearly tradition of updating the standard model precision wishlist. If nothing else, this will keep us from having even more work to do at Les Houches 2023.

    hep-phhep-exJ.Phys.G(2023)·57 citations
  20. 20*

    On the sensitivity of the D parameter to new physics

    Adam Falkowski🇫🇷 · Antonio Rodríguez-Sánchez🇫🇷

    Measurements of angular correlations in nuclear beta decay are important tests of the Standard Model (SM). Among those, the so-called D correlation parameter occupies a particular place because it is odd under time reversal, and because the experimental sensitivity is at the level, with plans of further improvement in the near future. Using effective field theory~(EFT) techniques, we reassess its potential to discover or constrain new physics beyond the SM. We provide a comprehensive classification of CP-violating EFT scenarios which generate a shift of the D parameter away from the SM prediction. We show that, in each scenario, a shift larger than is in serious tension with the existing experimental data, where bounds coming from electric dipole moments and LHC observables play a decisive role. The tension can only be avoided by fine tuning of the parameters in the UV completion of the EFT. We illustrate this using examples of leptoquark UV completions. Finally, we comment on the possibility to probe CP-conserving new physics via the D parameter.

    hep-phEPJC(2022)·6 citations
  21. 21*

    Neutron star observations of pseudoscalar-mediated dark matter

    John Coffey🇨🇦 · David McKeen🇨🇦 · David E. Morrissey🇨🇦 · Nirmal Raj🇨🇦

    Scattering interactions between dark matter and Standard Model states mediated by pseudoscalars are generically challenging to uncover at direct detection experiments due to rates suppressed by powers of the local dark matter velocity v ~ 0.001 c. However, they may be observed in the dark matter-induced heating of neutron stars, whose steep gravitational potentials prevent such suppression by accelerating infalling particles to semi-relativistic speeds. We investigate this phenomenon in the context of two specific, self-consistent scenarios for pseudoscalars coupled to dark matter, and compare the sensitivity of neutron star heating to bounds from direct searches for the mediators and dark matter. The first "lighter" scenario consists of sub-10 GeV mass dark matter mediated by an axion-like particle (ALP), while the second "heavier" scenario has dark matter above 10 GeV mediated by a dark pseudoscalar that mixes with a pseudoscalar from a two-Higgs doublet (the so-called 2HDM+a model). In both frameworks, we show that imminent measurements of neutron stars will be able to test pseudoscalar-mediated dark matter beyond the reach of direct dark matter searches as well as bounds on the mediators from flavor observables, beam dump experiments, and high-energy colliders.

    hep-phastro-ph.HEhep-exPRD(2022)·35 citations
  22. 22*

    Double and multiple bangs at tau neutrino telescopes: A novel probe of sphalerons with cosmogenic neutrinos

    Guo-yuan Huang🇩🇪

    In light of the exciting campaign of cosmogenic neutrino detection, we investigate the double and multiple tau bangs detectable at future tau neutrino telescopes. Such events are expected from the Standard Model (SM) higher-order processes, which can be easily identified with broad techniques anticipated at future tau neutrino telescopes. We find that SM perturbative processes can already contribute observable double-bang events to telescopes with a sensitivity of collecting cosmogenic neutrino events. The detectable but suppressed rate in fact makes the double and multiple bangs an excellent probe of SM unknowns and possible new physics beyond. As a case study, the nonperturbative sphaleron process, which can copiously produce multiple tau bangs, is explored.

    hep-phastro-ph.HEhep-exEPJC(2022)·5 citations
  23. 23*

    Search Prospects for Axion-like Particles at Rare Nuclear Isotope Accelerator Facilities

    Wooyoung Jang🇺🇸 · Doojin Kim🇺🇸 · Kyoungchul Kong🇺🇸 · Youngjoon Kwon🇰🇷 · Jong-Chul Park🇰🇷 · Min Sang Ryu🇰🇷 · Seodong Shin🇰🇷 · Richard G. Van de Water🇺🇸 · Un-Ki Yang🇰🇷 · Jaehoon Yu🇺🇸

    We propose a novel experimental scheme, called DAMSA (Dump-produced Aboriginal Matter Searches at an Accelerator), for searching for dark-sector particles, using rare nuclear isotope accelerator facilities that provide high-flux proton beams to produce a large number of rare nuclear isotopes. The high-intensity nature of their beams enables the investigation of dark-sector particles, including axion-like particles (ALPs) and dark photons. By contrast, their typical beam energies are not large enough to produce the backgrounds such as neutrinos resulting from secondary charged particles. The detector of DAMSA is then placed immediate downstream of the proton beam dump to maximize the prompt decay signals of dark-sector particles, which are often challenging to probe in other beam-dump-type experiments featuring a longer baseline, at the expense of an enormous amount of the beam-related neutron (BRN) background. We demonstrate that BRN can be significantly suppressed if the signal accompanies multiple, correlated visible particles in the final state. As an example physics case, we consider ALPs interacting with the Standard Model photon and their diphoton decay signal at DAMSA implemented at a rare nuclear isotope facility similar to the Rare isotope Accelerator complex for ON-line experiment under construction in South Korea. We show that the close proximity of the detector to the ALP production dump makes it possible to probe a high-mass region of ALP parameter space that the existing experiments have never explored.

    hep-phhep-exPRD(2023)·10 citations
  24. 24*

    Ultra-relativistic bubbles from the simplest Higgs portal and their cosmological consequences

    Aleksandr Azatov🇮🇹 · Giulio Barni🇮🇹 · Sabyasachi Chakraborty🇮🇹 · Miguel Vanvlasselaer🇮🇹 · Wen Yin🇯🇵

    We analyze the phase transitions in the minimal extension of the SM with a real singlet scalar field. The novelty of our study is that we identify and analyze in details the region of parameter space where the first order phase transition can occur and in particular when the bubbles with true vacuum can reach relativistic velocities. This region is interesting since it can lead to the new recently discussed baryogenesis and Dark Matter production mechanisms. We fully analyze different models for the production of Dark Matter and baryogenesis as well as the possibilities of discovery at the current and future experiments.

    hep-phastro-ph.COJHEP(2022)·84 citations
  25. 25*

    Preparations for Quantum Simulations of Quantum Chromodynamics in 1+1 Dimensions: (I) Axial Gauge

    Roland C. Farrell🇺🇸 · Ivan A. Chernyshev🇺🇸 · Sarah J. M. Powell🇨🇦 · Nikita A. Zemlevskiy🇺🇸 · Marc Illa🇺🇸 · Martin J. Savage🇺🇸

    Tools necessary for quantum simulations of dimensional quantum chromodynamics are developed. When formulated in axial gauge and with two flavors of quarks, this system requires 12 qubits per spatial site with the gauge fields included via non-local interactions. Classical computations and D-Wave's quantum annealer Advantage are used to determine the hadronic spectrum, enabling a decomposition of the masses and a study of quark entanglement. Color edge states confined within a screening length of the end of the lattice are found. IBM's 7-qubit quantum computers, ibmq_jakarta and ibm_perth, are used to compute dynamics from the trivial vacuum in one-flavor QCD with one spatial site. More generally, the Hamiltonian and quantum circuits for time evolution of dimensional gauge theory with flavors of quarks are developed, and the resource requirements for large-scale quantum simulations are estimated.

    quant-phhep-lathep-phnucl-thPRD(2023)·166 citations
  26. 26*

    Proton Penetration Efficiency over a High Altitude Observatory in Mexico

    S. Miyake · T. Koi · Y. Muraki🇯🇵 · Y. Matsubara · S. Masuda · P. Miranda · T. Naito · E. Ortiz · A. Oshima · T. Sakai🇯🇵 · T. Sako🇯🇵 · S. Shibata🇯🇵 and 3 other authors

    In association with a large solar flare on November 7, 2004, the solar neutron detectors located at Mt. Chacaltaya (5,250m) in Bolivia and Mt. Sierra Negra (4,600m) in Mexico recorded very interesting events. In order to explain these events, we have performed a calculation solving the equation of motion of anti-protons inside the magnetosphere. Based on these results, the Mt. Chacaltaya event may be explained by the detection of solar neutrons, while the Mt. Sierra Negra event may be explained by the first detection of very high energy solar neutron decay protons (SNDPs) around 6 GeV.

    astro-ph.SRastro-ph.HEhep-phSciPost Phys.Proc.(2023)·1 citation
  27. 27*

    Updated neutrino mass constraints from galaxy clustering and CMB lensing-galaxy cross-correlation measurements

    Isabelle Tanseri🇸🇪 · Steffen Hagstotz🇸🇪 · Sunny Vagnozzi🇬🇧 · Elena Giusarma🇺🇸 · Katherine Freese🇺🇸

    We revisit cosmological constraints on the sum of the neutrino masses from a combination of full-shape BOSS galaxy clustering [] data and measurements of the cross-correlation between Planck Cosmic Microwave Background (CMB) lensing convergence and BOSS galaxy overdensity maps [], using a simple but theoretically motivated model for the scale-dependent galaxy bias in auto- and cross-correlation measurements. We improve upon earlier related work in several respects, particularly through a more accurate treatment of the correlation and covariance between and measurements. When combining these measurements with Planck CMB data, we find a 95% confidence level upper limit of , while slightly weaker limits are obtained when including small-scale ACTPol CMB data, in agreement with our expectations. We confirm earlier findings that (once combined with CMB data) the full-shape information content is comparable to the geometrical information content in the reconstructed BAO peaks given the precision of current galaxy clustering data, discuss the physical significance of our inferred bias and shot noise parameters, and perform a number of robustness tests on our underlying model. While the inclusion of measurements does not currently appear to lead to substantial improvements in the resulting constraints, we expect the converse to be true for near-future galaxy clustering measurements, whose shape information content will eventually supersede the geometrical one.

    astro-ph.COhep-phJHEAp(2022)·89 citations
  28. 28*

    On the effective action for scalars in a general manifold to any loop order

    Rodrigo Alonso🇬🇧 · Mia West🇬🇧

    Functional methods and a derivative expansion are employed for laying out a procedure to compute the effective action to any loop order, for scalar fields parametrising an arbitrary Riemannian manifold, while maintaining explicit field-space covariance. In this process, the geometric generalization of the LSZ reduction formula is presented. These results are of use in the characterization of effective field theories for electroweak symmetry breaking and extend a geometric perspective in field space beyond one loop.

    hep-thhep-phPLB(2023)·34 citations
  29. 29*

    Final state interactions in semi-inclusive neutrino-nucleus scattering: Application to T2K and MINERA experiments

    J.M. Franco-Patino🇪🇸 · R. González-Jiménez🇮🇹 · S. Dolan🇨🇭 · M.B. Barbaro🇮🇹 · J.A. Caballero🇪🇸 · G.D. Megias🇪🇸 · J.M. Udias🇮🇹

    We present a complete comparison of semi-inclusive -C cross-section measurements by T2K and MINERA collaborations with the predictions from the SuSAv2-MEC model implemented in the neutrino-nucleus event generator GENIE and an unfactorized approach based on the relativistic distorted wave impulse approximation (RDWIA). Results, that include cross sections as function of the final muon and proton kinematics and correlations between both, show that the agreement with data obtained by the RDWIA approach, that accounts for final-state interactions, matches or improves GENIE-SuSAv2 predictions for very forward angles where scaling violations are relevant.

    nucl-thhep-phPRD(2022)·41 citations
  30. 30*

    Curved momentum space equivalent to the linear and quadratic Generalized Uncertainty Principle

    Fabian Wagner🇵🇱

    In this work, we deepen the correspondence between Generalized Uncertainty Principles (GUPs) and quantum dynamics on curved momentum space. In particular, we investigate the linear and quadratic GUP. Similarly to earlier work, the resulting curvature tensor in the dual theory is proportional to the coordinate non-commutativity of the original formulation.

    gr-qchep-phhep-th4 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.