PaperPanorama

HEP Phenomenology·hep-ph

Thu·Aug 4, 2022

25 papers19 primary·6 cross-listed·reconstructed*

  1. 01*

    Signatures of Non-thermal Dark Matter with Kination and Early Matter Domination: Gravitational Waves versus Laboratory Searches

    Anish Ghoshal🇵🇱 · Lucien Heurtier🇬🇧 · Arnab Paul🇮🇳

    The non-thermal production of dark matter (DM) usually requires very tiny couplings of the dark sector with the visible sector and therefore is notoriously challenging to hunt in laboratory experiments. Here we propose a novel pathway to test such a production in the context of a non-standard cosmological history, using both gravitational wave (GW) and laboratory searches. We investigate the formation of DM from the decay of a scalar field that we dub as the reheaton, as it also reheats the Universe when it decays. We consider the possibility that the Universe undergoes a phase %of kination with \textit{kination-like} stiff equation-of-state () before the reheaton dominates the energy density of the Universe and eventually decays into Standard Model and DM particles. We then study how first-order tensor perturbations generated during inflation, the amplitude of which may get amplified during the kination era and lead to detectable GW signals. Demanding that the reheaton produces the observed DM relic density, we show that the reheaton's lifetime and branching fractions are dictated by the cosmological scenario. In particular, we show that it is long-lived and can be searched by various experiments such as DUNE, FASER, FASER-II, MATHUSLA, SHiP, etc. We also identify the parameter space which leads to complementary observables for GW detectors such as LISA and u-DECIGO. In particular we find that a kination-like period with an equation-of-state parameter and a reheaton mass GeV and a DM mass of keV may lead to sizeable imprints in both kinds of searches.

    hep-phgr-qcJHEP(2022)·36 citations
  2. 02*

    Michel parameters in the presence of massive Dirac and Majorana neutrinos

    Juan Manuel Márquez🇲🇽 · Gabriel López Castro🇲🇽 · Pablo Roig🇲🇽

    We analyse the effects of Dirac and Majorana neutrinos on leptonic decays of muon and tau leptons using the most general four-lepton effective interaction Hamiltonian of dimension six. We calculate the specific energy and angular distribution of the final charged lepton, including the polarizations of the initial and final charged leptons. We discuss the new generalized Michel parameters and focus on the effects of the heavy neutrino masses that would lead to sizable contributions on scenarios where the new sterile neutrinos have non-negligible mixing. Specifically, the most promising scenario is found for the case of decay with one heavy final-state neutrino with a mass around MeV, where the linear term suppression could be of order , low enough to be measured in current and forthcoming experiments.

    hep-phJHEP(2022)·21 citations
  3. 03*

    Instanton effects on electromagnetic transitions of charmonia

    Ki-Hoon Hong🇰🇷 · Ulugbek Yakhshiev🇰🇷 · Hyun-Chul Kim🇰🇷

    We investigate the mass spectrum and electromagnetic transitions of charmonia, emphasizing the instanton effects on them. The heavy-quark potential consists of the Coulomb-like potential from one-gluon exchange and the linear confining potential. We introduce the nonperturbative heavy-quark potential derived from the instanton vacuum. We also consider the screened confining potential, which better describes the electromagnetic decays of higher excited states. Using this improved heavy-quark potential, we compute the mass spectrum and electromagnetic decays of the charmonia. Focusing on the instanton effects, we discuss the results compared with the experimental data and those from other works. The instanton effects are marginal on the electromagnetic decays of charmonia.

    hep-phPTEP(2022)·5 citations
  4. 04*

    Quarkophobic W' for LHC searches

    Alfredo Gurrola🇺🇸 · José David Ruiz-Álvarez🇨🇴

    We consider a simplified model where a W' boson is added to the standard model with negligible couplings to quarks, but generic couplings to leptons and electroweak bosons. We study the implications of such a model for LHC searches. Consequently, we propose an LHC search through the vector boson fusion topology which would have sensitivity for such a new particle with the current proton-proton collisions's energy and available luminosity.

    hep-ph1 citation
  5. 05*

    Possible molecular states from interactions of charmed baryons

    Dan Song🇨🇳 · Lin-Qing Song🇨🇳 · Shu-Yi Kong🇨🇳 · Jun He🇨🇳

    In this work, we perform a systematic study of possible molecular states composed of two charmed baryons including hidden-charm systems , , and , and corresponding double-charm systems , , and . With the help of the heavy quark chiral effective Lagrangians, the interactions are described with , , , , , and exchanges. The potential kernels are constructed, and inserted into the quasipotential Bethe-Salpeter equation. The bound states from the interactions considered is studied by searching for the poles of the scattering amplitude. The results suggest that strong attractions exist in both hidden-charm and double-charm systems considered in the current work, and bound states can be produced in most of the systems. More experiment studies about these molecular states are suggested though the nucleon-nucleon collison at LHC and nucleon-antinucleon collison at .

    hep-phnucl-thPRD(2022)·11 citations
  6. 07*

    Finite-volume effects in baryon number fluctuations around the QCD critical endpoint

    Julian Bernhardt🇩🇪 · Christian S. Fischer🇩🇪 · Philipp Isserstedt🇩🇪

    We present results for the volume dependence of baryon number fluctuations in the vicinity of the (conjectured) critical endpoint of QCD. They are extracted from the nonperturbative quark propagator that is obtained as a solution to a set of truncated Dyson--Schwinger equations of ()-flavor QCD in Landau gauge, which takes the backcoupling of quarks onto the Yang--Mills sector explicitly into account. This well-studied system predicts a critical endpoint at moderate temperatures and rather large chemical potential. We investigate this system at small and intermediate finite, three-dimensional, cubic volumes and study the resulting impact on baryon number fluctuations and ratios thereof up to fourth order in the region of the critical endpoint. Due to the limitations of our truncation, the results are quantitatively meaningful only outside the critical scaling region of the endpoint. We find that the fluctuations are visibly affected by the finite volume, particularly for antiperiodic boundary conditions, whereas their ratios are practically invariant.

    hep-phhep-exhep-latPLB(2023)·19 citations
  7. 08*

    Collision centrality and energy dependence of strange hadron production in Au + Au collisions at \sqrt{s_{NN}}= 7.7-54.4 GeV

    Yanting Feng🇨🇳 · Ziyao Song🇨🇳 · Fenglan Shao🇨🇳 · Jun Song🇨🇳

    We apply an equal-velocity quark combination model to systematically study the transverse momentum (p_{T}) spectra of strange hadrons K_{S}^{0}, \phi, \Lambda, \Xi^{-}, \Omega^{-}, \bar{\Lambda}, \bar{\Xi}^{+} and \bar{\Omega}^{+} at mid-rapidity in Au+Au collisions at \sqrt{s_{NN}}= 7.7, 11.5, 19.6, 27, 39, 54.4 GeV. Relative deviation between the model calculation and experimental data of these eight hadrons is generally about 2-3% at \sqrt{s_{NN}}= 27, 39, 54.4 GeV and in central collisions at 7.7, 11.5, 19.6 GeV. The deviation slightly increases up to about 4% in the semi-central and peripheral collision at \sqrt{s_{NN}}= 7.7, 11.5, 19.6 GeV. We systematically explain the dependence of two baryon-to-meson ratios \bar{\Lambda}/K_{S}^{0} and \Omega/\phi on p_{T}, collision centrality and collision energy by the property of quark p_{T} spectra at hadronization. We derive the analytic relations between R_{CP} of hadrons and those of quarks, and we use them to naturally explain the species and p_{T} dependence of R_{CP} of those strange hadrons.

    hep-phPRC(2023)·2 citations
  8. 09*

    Threshold resummation of quark-gluon partonic channels at next-to-leading power

    Leonardo Vernazza🇮🇹

    We discuss recent progress concerning the resummation of large logarithms at next-to-leading power (NLP) in scattering processes near threshold. We begin by briefly reviewing the diagrammatic and SCET approach, which are used to derive factorization theorems for physical observables in this kinematic limit. Then, we focus on the quark-gluon channel in deep inelastic scattering and Drell-Yan. We show that the use of consistency conditions for the cancellation of leading poles in the hadronic cross section can be used to achieve the resummation of large leading logarithms (LLs) at NLP, both within diagrammatic and SCET methods. In this context it is also possible to investigate the problem of endpoint divergences appearing at NLP in SCET, and relate its solution to the concept of re-factorization.

    hep-phPoS(2022)·1 citation
  9. 10*

    Antenna subtraction for jet production observables in full colour at NNLO

    X. Chen🇩🇪 · T. Gehrmann🇨🇭 · E.W.N. Glover🇬🇧 · J. Mo🇨🇭

    We describe the details of the calculation of the full colour NNLO QCD corrections to jet production observables at the LHC with antenna subtraction. All relevant matrix elements for the process at NNLO in full colour are colour-decomposed and given in a and expansion, making identification of leading and subleading colour contributions transparent. The colour-ordered antenna subtraction method has previously successfully been used to construct the NNLO subtraction terms for processes with up to five partons or in the leading colour approximation. However, it is challenged by the more involved subleading colour structure of the squared matrix elements in processes with six or more partons. Here, we describe the methods needed to successfully construct the NNLO subtraction terms for the subleading colour contributions to dijet production within the antenna subtraction formalism.

    hep-phJHEP(2022)·10 citations
  10. 11*

    Light new physics and neutrino electromagnetic interactions in XENONnT

    Amir N. Khan🇩🇪

    We derive new limits on the neutrino electromagnetic interactions and weakly coupled light vector and scalar mediators using the recent XENONnT data of the solar neutrino-electron elastic scattering. XENONnT has already reported the world's best constraint on the flavor-independent effective neutrino magnetic moment with almost twice the exposure and improved systematics. We extend this analysis and derive constraints on all the possible electromagnetic interactions and flavor universal light gauge boson couplings and masses, which could contribute to the neutrino-electron elastic scattering process. We consider both flavor-independent and flavor-dependent interactions of the neutrino magnetic moments, millicharges, charge radii, and anapole moments for the electromagnetic interactions. The new limits on the magnetic moment, millicharge, vector, and scalar interactions are improved by about one order of magnitude. At the same time, there is relatively weaker improvement in the case of neutrino charge radii and anapole moments.

    hep-phhep-exPLB(2023)·49 citations
  11. 12*

    Improvement of resolution in semileptonic decays based on machine learning

    Panting Ge🇨🇳 · Xiaotao Huang🇨🇳 · Miroslav Saur🇩🇪 · Liang Sun🇨🇳

    The neutrino closure method is often used to obtain kinematics of semileptonic decays with one unreconstructed particle. The kinematics of decays can be deducted by a two-fold ambiguity with a quadratic equation. To resolve the two-fold ambiguity, a new method based on Machine Learning (ML) is proposed. We study the effect of different sets of features and regressors on the improvement of reconstructed invariant mass squared of system~(). The result shows that the best performance is obtained by using the flight vector as the features, and the multilayer perceptron (MLP) model as the regressor. Compared with the random choice, the MLP model improves the resolution of reconstructed by 40\%. Furthermore, the possibility of using this method on various semileptonic decays is shown.

    hep-phhep-exAdv.High Energy Phys.(2023)·1 citation
  12. 13*

    Shining light on magnetic monopoles through high-energy muon colliders

    Ji-Chong Yang🇨🇳 · Yu-Chen Guo🇨🇳 · Bing Liu🇨🇳 · Tong Li🇨🇳

    The search for magnetic monopoles has been a longstanding concern of the physics community for nearly a century. However, up to now, the existence of elementary magnetic monopoles remains an open question. The electroweak 't Hooft-Polyakov monopoles have been predicted with mass at the order of 10 TeV. This mass scale is unreachable at current colliders. Recently, the muon colliders have gained much attention in the community due to technological developments. The advantages of the muon beam encourage us to raise the high-energy option and consider the high-energy muon collider as a unique opportunity to search for magnetic monopoles. This letter discusses the production of magnetic monopoles via the annihilation process and proposes the search for magnetic monopoles at future high-energy muon colliders.

    hep-phNPB(2023)·8 citations
  13. 14*

    Thermalization of weakly coupled non-Abelian plasmas at next-to-leading order

    Yu Fu🇨🇳 · Jacopo Ghiglieri🇫🇷 · Shahin Iqbal🇵🇰 · Aleksi Kurkela🇳🇴

    We employ the QCD kinetic theory, including next-to-leading(NLO) order corrections in coupling constant, to study the evolution of weakly coupled non-Abelian plasmas towards thermal equilibrium. For two characteristic far-from-equilibrium systems with either under- or over-occupied initial conditions, the NLO corrections remain well under control for a wide range of couplings, and the overall effect of NLO corrections is a reduction in the time required for thermalization.

    hep-phActa Phys.Polon.Supp.(2023)·0 citations
  14. 15*

    Exploring the feasibility of the charged lepton flavor violating decay in inverse and linear seesaw mechanisms with flavour symmetry

    Maibam Ricky Devi🇮🇳 · Kalpana Bora🇮🇳

    One of the possible ways to explain the observed flavour structure of fundamental particles is to include flavor symmetries in the theories. In this work, we investigate the rare charged lepton flavour violating (cLFV) decay process () in two of the low scale (TeV) seesaw models: (i) the Inverse seesaw (ISS) and (ii) Linear seesaw (LSS) models within the framework of flavour symmetry. Apart from the flavour symmetry, some other symmetries like , and are included to construct the Lagrangian. We use results from our previous work \cite{Devi:2021ujp,Devi:2021aaz} where we computed unknown neutrino oscillation parameters within limits of their global best fit values, and apply those results to compute the branching ratio (BR) of the muon decay for both the seesaw models. Next we compare our results with the current experimental bounds and sensitivity limits of BR() as projected by various experiments, and present a comparative analysis that which of the two models is more likely to be tested by which current/future experiment. This is done for various values of currently allowed non-unitarity parameter. This comparative study will help us to pinpoint that which of the low scale seesaw models and triplet flavon VEV alignments will be more viable and favourable for testing under a common flavour symmetry ( here), and hence can help discriminate between the two models.

    hep-phMod.Phys.Lett.A(2022)·4 citations
  15. 16*

    Proportionality of gravitational and electromagnetic radiation by an electron in an intense plane wave

    G. Audagnotto🇩🇪 · C. H. Keitel🇩🇪 · A. Di Piazza🇩🇪

    Accelerated charges emit both electromagnetic and gravitational radiation. Classically, it was found that the electromagnetic energy spectrum radiated by an electron in a monochromatic plane wave is proportional to the corresponding gravitational one. Quantum mechanically, it was shown that the amplitudes of graviton photoproduction and Compton scattering are proportional to each other at tree level. Here, by combining strong-field QED and quantum gravity, we demonstrate that the amplitude of nonlinear graviton photoproduction in an arbitrary plane wave is proportional to the corresponding amplitude of nonlinear Compton scattering. Also, introducing classical amplitudes we prove that the proportionality relies on the semiclassical nature of the electron's motion in a plane wave and on energy-momentum conservation laws, leading to the same proportionality constant in the classical and quantum case. These results deepen the intertwine between gravity and electromagnetism into both a nonlinear and a quantum level.

    hep-phgr-qcPRD(2022)·8 citations
  16. 17*

    Can neutron star discriminate between Dirac and Majorana neutrinos?

    Ashutosh Kumar Alok🇮🇳 · Neetu Raj Singh Chundawat🇮🇳 · Arindam Mandal🇮🇳 · Trisha Sarkar🇮🇳

    Any observable repercussion of electromagnetic properties of neutrinos will provide a perspicuous signature of new physics. This includes the phenomenon of neutrino spin flip in the propinquity of an external magnetic field. In this work, we study the inklings of spin flip in a neutron star with a radially varying magnetic field and matter density, known as a magnetar, which is also a source of profuse production of neutrinos during its initial stage of thermal evolution. We find that a precise measurement of neutrino flux emerging from a neutron star would reeducate discrimination between Dirac and Majorana neutrinos as the flux reduction due to spin flip oscillations are different for both types of neutrinos. Further, the reduction of flux is more preeminent near the surface as compared to the core of a neutron star.

    hep-ph5 citations
  17. 18*

    LSND and MiniBooNE as guideposts to understanding the muon results and the CDF II mass measurement

    Waleed Abdallah🇪🇬 · Raj Gandhi🇮🇳 · Samiran Roy🇮🇹

    In recent times, several experiments have observed results that are in significant conflict with the predictions of the Standard Model (SM). Two neutrino experiments, LSND and MiniBooNE (MB) have reported electron-like signal excesses above backgrounds. Both the Brookhaven and the Fermilab muon collaborations have measured values of this parameter which, while consistent with each other, are in conflict with the SM. Recently, the CDF II collaboration has reported a precision measurement of the -boson mass that is in strong conflict with the SM prediction. It is worthwhile to seek new physics which may underly all four anomalies. In such a quest, the neutrino experiments could play a crucial role, because once a common solution to these anomalies is sought, LSND and MB, due to their highly restrictive requirements and observed final states, help to greatly narrow the multiplicity of new physics possibilities that are otherwise open to the mass and muon discrepancies. Pursuant to this, earlier work has shown that LSND, MB and the muon results can be understood in the context of a scalar extension of the SM which incorporates a second Higgs doublet and a dark sector singlet. We show that the same model leads to a contribution to the mass which is consistent with the recent CDF II measurement. While the LSND, MB fits and the muon results help determine the masses of the light scalars in the model, the calculation of the oblique parameters and determines the allowed mass ranges of the heavier pseudoscalar and the charged Higgs bosons as well as the effective Weinberg angle and its new range.

    hep-phhep-exPLB(2023)·11 citations
  18. 19*

    Morphing parton showers with event derivatives

    Benjamin Nachman🇺🇸 · Stefan Prestel🇸🇪

    We develop EventMover, a differentiable parton shower event generator. This tool generates high- and variable-length scattering events that can be moved with simulation derivatives to change the value of the scale defining the strong coupling constant, without introducing statistical variations between samples. To demonstrate the potential for EventMover, we compare the output of the simulation with data to show how one could fit with only a single event sample. This is a critical step towards a fully differentiable event generator for particle and nuclear physics.

    hep-phhep-ex12 citations
  19. 20*

    Ruling out Initially Clustered Primordial Black Holes as Dark Matter

    V. De Luca🇨🇭 · G. Franciolini🇮🇹 · A. Riotto🇨🇭 · H. Veermäe🇪🇪

    Combining constraints from microlensing and Lyman- forest, we provide a simple argument to show that large spatial clustering of stellar-mass primordial black holes at the time of formation, such as the one induced by the presence of large non-Gaussianities, is ruled out. Therefore, it is not possible to evade existing constraints preventing stellar-mass primordial black holes to be a dominant constituent of the dark matter by boosting their initial clustering.

    astro-ph.COgr-qchep-phhep-thPRL(2022)·46 citations
  20. 21*

    The splitting of directed flow for identified light hadrons ( and ) and strange baryons ( and ) in Au+Au collisions at STAR

    Ashik Ikbal Sheikh (for the STAR Collaboration)🇺🇸

    The first measurements for rapidity-odd directed flow of and in Au+Au collisions at 27 and 200 GeV are reported. The coalescence sum rule is examined with various combinations of hadrons where all constituent quarks are produced, such as , , , , , , and . For such combinations, a systematic violation of the sum rule is observed with increasing difference in the electric charge and the strangeness content of the combinations. Measurements are compared with the calculations of A Multi-Phase Transport (AMPT) model and Parton-Hadron String Dynamics (PHSD) model with electromagnetic (EM) field. The PHSD model with EM field agrees with the measurements within uncertainties.

    nucl-exhep-exhep-phnucl-thActa Phys.Polon.Supp.(2023)·1 citation
  21. 22*

    Jet cone radius dependence of and at PbPb 5.02 TeV from JEWEL++v-USPhydro

    Leonardo Barreto🇧🇷 · Fabio M. Canedo🇧🇷 · Marcelo G. Munhoz🇧🇷 · Jorge Noronha🇺🇸 · Jacquelyn Noronha-Hostler🇺🇸

    We combine, for the first time, event-by-event initial conditions with the relativistic viscous hydrodynamic model v-USPhydro and the Monte Carlo event generator JEWEL to make predictions for the nuclear modification factor and jet azimuthal anisotropies in PbPb collisions for multiple centralities and values of the jet cone radius . The -dependence of and strongly depends on the presence of recoiling scattering centers. We find a small jet in mid-central collisions and consistent results in wide jet regions and centralities with ATLAS data.

    nucl-thhep-phnucl-exPLB(2025)·18 citations
  22. 23*

    Nuclear physics uncertainties in light hypernuclei

    D. Gazda🇨🇿 · T. Yadanar Htun🇹🇭 · C. Forssén🇸🇪

    The energy levels of light hypernuclei are experimentally accessible observables that contain valuable information about the interaction between hyperons and nucleons. In this work we study strangeness systems H and He using the ab initio no-core shell model (NCSM) with realistic interactions obtained from chiral effective field theory (EFT). In particular, we quantify the finite precision of theoretical predictions that can be attributed to nuclear physics uncertainties. We study both the convergence of the solution of the many-body problem (method uncertainty) and the regulator- and calibration data-dependence of the nuclear EFT Hamiltonian (model uncertainty). For the former, we implement infrared correction formulas and extrapolate finite-space NCSM results to infinite model space. We then use Bayesian parameter estimation to quantify the resulting method uncertainties. For the latter, we employ a family of 42 realistic Hamiltonians and measure the standard deviation of predictions while keeping the leading-order hyperon-nucleon interaction fixed. Following this procedure we find that model uncertainties of ground-state separation energies amount to keV in H(H,He) and keV in He. Method uncertainties are comparable in magnitude for the H,He excited states and He, which are computed in limited model spaces, but otherwise much smaller. This knowledge of expected theoretical precision is crucial for the use of binding energies of light hypernuclei to infer the elusive hyperon-nucleon interaction.

    nucl-thhep-phnucl-exPRC(2022)·20 citations
  23. 24*

    rays run on time

    Daniel Beltrán Martínez🇪🇸 · Felipe J. Llanes-Estrada🇪🇸 · Gloria Tejedor-García (Univ. Complutense de Madrid)🇪🇸

    Significant absorption of radiation is usually accompanied by refraction. This is not the case for rays travelling cosmic distances. We show that the real and imaginary parts of the refraction index are indeed commensurable, as they are related by dispersion relations, but when turning to physical observables, the (finite) optical depth is way larger than the (infinitesimal) time delay of the gamma rays relative to gravitational radiation. The numerically large factor solving the apparent contradiction is arising from basic wave properties (Bouguer-Beer-Lambert law) and the standard cosmological model, respectively.

    astro-ph.HEhep-phJCAP(2022)·0 citations
  24. 25*

    Exploring Answers to Questions

    Jonathan J. Heckman🇺🇸 · Austin Joyce🇺🇸 · Jeremy Sakstein🇺🇸 · Mark Trodden🇺🇸

    We explore potential uses of physics formulated in Kleinian (i.e., ) signature spacetimes as a tool for understanding properties of physics in Lorentzian (i.e., ) signature. Much as Euclidean (i.e., ) signature quantities can be used to formally construct the ground state wavefunction of a Lorentzian signature quantum field theory, a similar analytic continuation to Kleinian signature constructs a state of low particle flux in the direction of analytic continuation. There is also a natural supersymmetry algebra available in signature, which serves to constrain the structure of correlation functions. Spontaneous breaking of Lorentz symmetry can produce various supersymmetry algebras that in signature correspond to non-supersymmetric systems. We speculate on the possible role of these structures in addressing the cosmological constant problem.

    hep-thastro-ph.COgr-qchep-phInt.J.Mod.Phys.A(2022)·13 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.