PaperPanorama

HEP Phenomenology·hep-ph

Tue·Nov 2, 2021

53 papers34 primary·19 cross-listed·reconstructed*

  1. 01*

    On the single classical field description of interacting scalar fields

    Andrew Eberhardt🇺🇸 · Alvaro Zamora🇺🇸 · Michael Kopp🇸🇪 · Tom Abel🇺🇸

    We test the degree to which interacting Bosonic systems can be approximated by a classical field as total occupation number is increased. This is done with our publicly available code repository, \href{https://github.com/andillio/QIBS}{QIBS}, a massively parallel solver for these systems. We use a number of toy models well studied in the literature and track when the classical field description admits quantum corrections, called the quantum breaktime. This allows us to test claims in the literature regarding the rate of convergence of these systems to the classical evolution. We test a number of initial conditions, including coherent states, number eigenstates, and field number states. We find that of these initial conditions, only number eigenstates do not converge to the classical evolution as occupation number is increased. We find that systems most similar to scalar field dark matter exhibit a logarithmic enhancement in the quantum breaktime with total occupation number. Systems with contact interactions or with field number state initial conditions, and linear dispersions, exhibit a power law enhancement. Finally, we find that the breaktime scaling depends on both model interactions and initial conditions.

    hep-phgr-qcphysics.comp-phPRD(2022)·13 citations
  2. 02*

    The role of the underlying event in the enhancement in high-energy pp collisions

    Zoltan Varga🇭🇺 · Robert Vertesi🇭🇺

    We study the enhanced production of charmed baryons relative to charmed mesons in proton--proton collisions at LHC energies. Utilizing PYTHIA 8 simulations with enhanced color-reconnection we propose methods based on the comparative use of several event-activity classifiers to identify the source of the charmed-baryon enhancement. We also conclude that in the scenario under investigation the excess production is primarily linked to the underlying event activity and not to the production of jets.

    hep-phJ.Phys.G(2022)·7 citations
  3. 04*

    Radial oscillations of quark stars admixed with dark matter

    José C. Jiménez🇧🇷 · Eduardo S. Fraga🇧🇷

    We investigated compact stars consisting of cold quark matter and fermionic dark matter treated as two admixed fluids. We computed the stellar structures and fundamental radial oscillation frequencies for different masses of the dark fermion in the cases of weak and strong self-interacting dark matter. We found that the fundamental frequency can be dramatically modified and, in some cases, stable dark strange planets and dark strangelets with very low masses and radii can be formed.

    hep-phastro-ph.HEgr-qcnucl-thUniverse(2022)·30 citations
  4. 05*

    Entopy release in Electroweak Phase Transition in 2HDM

    Arnab Chaudhuri🇷🇺 · Maxim Yu. Khlopov🇷🇺 · Shiladitya Porey🇷🇺

    Electroweak phase transition in the simplest extension of the standard model namely two Higgs doublet model and entropy production within this framework is studied. We have considered several benchmark points which were called using BSMPT, a C++ package, within the limit of are studied, and corresponding entropy productions are shown in this paper.

    hep-phastro-ph.CO2 citations
  5. 06*

    Calculational Techniques in Particle Theory

    Lorenzo Tancredi🇬🇧

    In this contribution, I review some of the latest advances in calculational techniques in theoretical particle physics. I focus, in particular, on their application to the calculation of highly non-trivial scattering processes, which are relevant for precision phenomenology studies at the Large Hadron Collider at CERN.

    hep-phPoS(2022)·5 citations
  6. 07*

    A new group of doubly charmed molecule with -doublet charmed meson pair

    Fu-Lai Wang🇨🇳 · Rui Chen🇨🇳 · Xiang Liu🇨🇳

    Inspired by the observation of the doubly charmed tetraquark state at the LHCb Collaboration, we systematically study the -wave interactions between a pair of charmed mesons () in the -doublet, where we adopt the one-boson-exchange model and consider both the - wave mixing and coupled channel effects. Our numerical results suggest that the prime doubly charmed molecular tetraquark candidates are the -wave state with , the -wave states with , and the -wave states with . The -wave state with , the -wave state with , and the -wave state with may be the possible isovector doubly charmed molecular tetraquark candidates. We expect the experiments like the LHCb or Belle II collaborations to search for these predicted doubly charmed molecular tetraquarks near the , , and thresholds in future.

    hep-phPLB(2022)·26 citations
  7. 08*

    Mass-spectra of singly, doubly, and triply bottom baryons

    Juhi Oudichhya🇮🇳 · Keval Gandhi🇮🇳 · Ajay Kumar Rai🇮🇳

    The present work has been done on the baryons containing one, two, or three bottom quarks. In this article, the ground-state masses of , , , , and baryons are calculated within the framework of Regge phenomenology. Further, the values of Regge slopes and Regge intercepts for singly, doubly, and triply bottom baryons are estimated in both the () and () planes to calculate the excited-state masses of these baryons. Here our attempt is to assign a possible spin-parity to recently observed some singly bottom baryons and our results could provide useful information for future experimental searches. Our calculated masses are in agreement with the experimental observations where available and close to other theoretical predictions.

    hep-phPRD(2021)·52 citations
  8. 09*

    On the Discrepancy between the FOPT and CIPT Approaches for Hadronic Tau Spectral Function Moments

    Andre H. Hoang🇦🇹 · Christoph Regner🇦🇹

    The discrepancy between the FOPT and CIPT approaches for hadronic spectral function moments constitutes the major theoretical uncertainty for strong coupling determinations from tau decay data. We show the discrepancy can be analytically understood since the Borel representations -- which have been assumed to be identical for both approaches previously -- differ in the presence of IR renormalons. This implies that the OPE condensate corrections are different for both approaches and that the discrepancy may eventually be reconciled. In the talk we explain the difference and some mathematical aspects of of the FOPT and CIPT Borel representations and show numerical results.

    hep-phSciPost Phys.Proc.(2022)·3 citations
  9. 10*

    New Physics Hints from Flavour

    Valerio Gherardi🇮🇹

    This Thesis presents my personal contributions to two distinct fields, namely the recent experimental anomalies in B-meson decays, and the longstanding quest for a theoretical explanation of lepton masses and mixings, under a unifying umbrella: Flavour Physics. The modern view of the Standard Model as an effective theory is motivated, and the dual role of flavour, as a probe of New Physics effects on one side, and as a piece of the puzzle itself on the other, is emphasized. By jointly discussing two physics cases of different nature, I attempt to offer a broader perspective on the current status of Beyond Standard Model searches. The discussion begins with a preliminary review of Standard Model Effective Field Theories, in which some utility results in theory matching are presented. The focus then moves to B-meson decay anomalies: after introducing Lepton Flavour Universality, we discuss the phenomenology of a specific Standard Model extension by scalar leptoquarks, and also present the Effective Field Theory framework of Rank-One Flavor Violation, providing a less detailed but broader picture for the case of neutral-current anomalies. Finally, we tackle the Standard Model flavour puzzle, describing an attempt to address charged lepton mass hierarchies in the framework of supersymmetric modular invariant models of lepton flavour.

    hep-phhep-ex4 citations
  10. 11*

    A Way of Fast Calculating Lepton Magnetic Moments in Quantum Electrodynamics

    Sergey Volkov🇷🇺

    A new method of divergence subtraction in Feynman parametric integrals is presented. The method is suitable for calculating the lepton anomalous magnetic moments (AMM) in quantum electrodynamics (QED). The subtraction procedure eliminates all divergences before integration and leads to a finite Feynman parametric integral for each individual Feynman diagram. It is based on a forest formula with linear operators applied to the Feynman amplitudes of ultraviolet-divergent subdiagrams. The formula is similar to BPHZ; the difference is only in the linear operators used and in the way of combining them. The subtraction is equivalent to the on-shell renormalization from the beginning: for obtaining the final result we should only sum up the contributions of all Feynman diagrams after subtraction. The developed method is an improvement of the method presented by the author in 2016. The modification is specifically designed for calculating the contributions dependent on the relations of particle masses. In comparison with the old version, the new subtraction formula does not contain redundant terms and possesses some flexibility that can be used for improving the precision of calculations. Numerical test results are presented up to four loops.

    hep-phPhys.Part.Nucl.(2022)·4 citations
  11. 13*

    SUSY in the light of the new "MUON G-2" Result

    Manimala Chakraborti🇵🇱 · Sven Heinemeyer🇪🇸 · Ipsita Saha🇯🇵

    The recently published result from the Fermilab "MUON G-2" experiment has confirmed the persistent 3-4 discrepancy between the experimental result from BNL for the anomalous magnetic moment of the muon, , and its Standard Model (SM) prediction. The combination of the two measurements yields a deviation of 4.2 from the SM value. Here, we review the parameter space of the electroweak (EW) sector of the Minimal Supersymmetric Standard Model (MSSM), that can accommodate the anomaly while being in full agreement with other experimental data, particularly the direct searches for EW particles at the LHC and dark matter (DM) relic density and direct detection constraints. We find that the combined constraints set an upper limit of ~ 600 GeV for the LSP and NLSP masses establishing clear targets for the future collider searches.

    hep-phPoS(2022)·6 citations
  12. 14*

    The TMDICE Monte Carlo shower program and algorithm for jet-fragmentation via coherent medium induced radiations and scatterings

    Martin Rohrmoser🇵🇱

    Parton jets in the hot and dense medium of a Quark Gluon Plasma (QGP) can undergo multiple processes of scatterings off medium particles as well as processes of coherent medium induced radiations. A Monte-Carlo algorithm and resulting program is presented that allows to obtain jets that were formed by these two types of processes from an initial highly energetic quark or gluon. The program accounts for the increase in the momentum components of jet-particles transverse to the jet-axis due to processes of scattering as well as medium induced radiations in addition to energy-loss due to the medium induced radiations.

    hep-phComput.Phys.Commun.(2022)·3 citations
  13. 15*

    Model-Independent Constraints on Non-Unitary Neutrino Mixing from High-Precision Long-Baseline Experiments

    Sanjib Kumar Agarwalla🇮🇳 · Sudipta Das🇮🇳 · Alessio Giarnetti🇮🇹 · Davide Meloni🇮🇹

    Our knowledge on the active 3 mixing angles (, , and ) and the CP phase is becoming accurate day-by-day enabling us to test the unitarity of the leptonic mixing matrix with utmost precision. Future high-precision long-baseline experiments are going to play an important role in this direction. In this work, we study the impact of possible non-unitary neutrino mixing (NUNM) in the context of next-generation long-baseline experiments DUNE and T2HKK/JD+KD having one detector in Japan (T2HK/JD) and a second detector in Korea (KD). We estimate the sensitivities of these setups to place direct, model-independent, and competitive constraints on various NUNM parameters. We demonstrate the possible correlations between the NUNM parameters, , and . Our numerical results obtained using only far detector data and supported by simple approximate analytical expressions of the oscillation probabilities in matter, reveal that JD+KD has better sensitivities for and as compared to DUNE, due to its larger statistics in the appearance channel and less systematic uncertainties in the disappearance channel, respectively. For , , and , DUNE gives better constraints as compared to JD+KD, due to its larger matter effect and wider neutrino energy spectrum. For , both DUNE and JD+KD give similar bounds. We also show how much the bounds on the NUNM parameters can be improved by combining the prospective data from DUNE and JD+KD setups. We find that due to zero-distance effects, the near detectors alone can also constrain , , and in both these setups. Finally, we observe that the appearance sample in DUNE can improve the constraints on and .

    hep-phhep-exphysics.ins-detJHEP(2022)·29 citations
  14. 16*

    Towards NNLO corrections to muon-electron scattering

    Syed Mehedi Hasan🇮🇹

    The recently proposed MUonE experiment at CERN aims at providing a novel determination of the leading order hadronic contribution to the muon anomalous magnetic moment through the study of elastic muon-electron scattering at relatively small momentum transfer. The anticipated accuracy of the order of 10ppm demands for high-precision predictions, including all the relevant radiative corrections. To aid the effort, the theoretical formulation for the fixed order NNLO QED corrections are described and the virtual NNLO leptonic corrections are calculated with complete mass effects.

    hep-ph0 citations
  15. 17*

    Ultralight dark matter searches with KAGRA gravitational wave telescope

    Yuta Michimura🇯🇵 · Tomohiro Fujita🇯🇵 · Jun'ya Kume🇯🇵 · Soichiro Morisaki🇺🇸 · Koji Nagano🇯🇵 · Hiromasa Nakatsuka🇯🇵 · Atsushi Nishizawa🇯🇵 · Ippei Obata🇩🇪

    Among various dark matter candidates, bosonic ultralight fields with masses below 1~eV are well motivated. Recently, a number of novel approaches have been put forward to search for ultralight dark matter candidates using laser interferometers at various scales. Those include our proposals to search for axion-like particles (ALPs) and vector fields with laser interferometric gravitational wave detectors. ALPs can be searched for by measuring the oscillating polarization rotation of laser light. Massive vector fields weakly coupled to the standard model sector can also be searched for by measuring the oscillating forces acting on the suspended mirrors of the interferometers. In this paper, the current status of the activities to search for such ultralight dark matter candidates using a gravitational wave detector in Japan, KAGRA, is reviewed. The analysis of data from KAGRA's observing run in 2020 to search for vector dark matter, and the installation of polarization optics to the arm cavity transmission ports of the interferometer to search for ALPs in future observing runs are underway.

    hep-phastro-ph.COastro-ph.IMgr-qc+1J.Phys.Conf.Ser.(2021)·9 citations
  16. 20*

    On the amplitudes at two loop in QCD

    Taushif Ahmed🇮🇹

    Through this article, we show that the amplitudes for the in the presence of bottom-Higgs Yukawa coupling can be constructed, up to a few anomalous diagrams, solely from a set of vector form factors of properly grouped classes of diagrams. Thereby, we can completely bypass the subtle issues involving the chiral quantity . In the second part, we demonstrate that while computing the amplitudes in Higgs effective field theory employing a non-anticommuting in dimensional regularization, we need to introduce a four-point effective composite operator to the renormalized Lagrangian in order to retain the physical properties of the amplitude.

    hep-phhep-thPoS(2022)·0 citations
  17. 21*

    Mixed QCD-EW corrections to Drell-Yan at the LHC

    Luca Buonocore🇨🇭

    We discuss recent theoretical results for the complete mixed QCD-EW corrections to lepton-pair production via the Drell-Yan mechanism, a cornerstone process for the precision physics programme at the LHC. We present results for fiducial cross sections and differential distributions to both the neutral current- and charged current- process. We show that the mixed corrections are relatively large and of similar size to the NNLO QCD ones at central scales. In particular, for the neutral current case, we report the first result at this order that is valid in the entire range of dilepton invariant masses.

    hep-phPoS(2022)·0 citations
  18. 22*

    Using unsupervised learning to detect broken symmetries, with relevance to searches for parity violation in nature. (Previously: "Stressed GANs snag desserts")

    Christopher G. Lester🇬🇧 · Rupert Tombs🇬🇧

    Testing whether data breaks symmetries of interest can be important to many fields. This paper describes a simple way that machine learning algorithms (whose outputs have been appropriately symmetrised) can be used to detect symmetry breaking. The original motivation for the paper was an important question in Particle Physics: "Is parity violated at the LHC in some way that no-one has anticipated?" and so we illustrate the main idea with an example strongly related to that question. However, in order that the key ideas be accessible to readers who are not particle physicists but who are interesting in symmetry breaking, we choose to illustrate the method/approach with a 'toy' example which places a simple discrete source of symmetry breaking (the handedness of human handwriting) within a idealised particle-physics-like context. Readers interested in seeing extensions to continuous symmetries, non-ideal environments or more realistic particle-physics contexts are provided with links to separate papers which delve into such details.

    hep-phTransactions on Machine Learning Research…·25 citations
  19. 23*

    Chiral Measurements

    Christopher G. Lester🇬🇧

    Searches for parity violation at particle physics collider experiments without polarised initial states or final-state polarimeters lack a formal framework within which some of their methods and results can be efficiently described. This document defines nomenclature which is intended to support future works in this area, however it has equal relevance to searches concerned with more conventional (and already well supported) pre-existing tests of parity-violation since it can be viewed as a formal axiomatisation of process of gaining evidence about parity violation regardless of its cause.

    hep-ph9 citations
  20. 24*

    Reheating in Models with Non-minimal Coupling in metric and Palatini formalisms

    Dhong Yeon Cheong🇰🇷 · Sung Mook Lee🇰🇷 · Seong Chan Park🇰🇷

    We study reheating of inflationary models with general non-minimal coupling with where is the Ricci scalar and is the inflaton potential. In particular, when we take the monomial potential with , we provide general analytic expressions for cosmological observables. We consider a wide range of non-minimal coupling in metric and Palatini formalisms and derive the predictions for cosmological observables and the reheating temperature taking a general equation of state parameter .

    hep-phastro-ph.COgr-qchep-thJCAP(2022)·47 citations
  21. 25*

    One-loop structure of parton distribution for the gluon condensate and "zero modes"

    Anatoly Radyushkin🇺🇸 · Shuai Zhao🇺🇸

    We present results for one-loop corrections to the recently introduced "gluon condensate" PDF . In particular, we give expression for the -part of its evolution kernel. To enforce strict compliance with the gauge invariance requirements, we have used on-shell states for external gluons, and have obtained identical results both in Feynman and light-cone gauges. No "zero mode" terms were found for the twist-4 gluon PDF . However a term was found for the GPD at nonzero momentum transfer . Overall, our results do not agree with the original attempt of one-loop calculations of for gluon states, which sets alarm warning for calculations that use matrix elements with virtual external gluons and for lattice renormalization procedures based on their results.

    hep-phhep-latJHEP(2021)·7 citations
  22. 27*

    Complementarity between neutrinoless double beta decay and collider searches for heavy neutrinos in composite-fermion models

    S. Biondini🇨🇭 · S. Dell'Oro🇮🇹 · R. Leonardi🇮🇹 · S. Marcocci🇺🇸 · O. Panella🇮🇹 · M. Presilla🇮🇹 · F. Vissani🇮🇹

    Composite-fermion models predict excited quarks and leptons with mass scales which can potentially be observed at high-energy colliders like the LHC; the most recent exclusion limits from the CMS and ATLAS Collaborations corner excited-fermion masses and the compositeness scale to the multi-TeV range. At the same time, hypothetical composite Majorana neutrinos would lead to observable effects in neutrinoless double beta decay () experiments. In this work, we show that the current composite-neutrino exclusion limit TeV, as extracted from direct searches at the LHC, can indeed be further improved to TeV by including the bound on the nuclear transition Xe Ba . Looking ahead, the forthcoming HL-LHC will allow probing a larger portion of the parameter-space, nevertheless, it will still benefit from the complementary limit provided by future detectors to explore composite-neutrino masses up to TeV.

    hep-phnucl-exnucl-th4 citations
  23. 28*

    Determination of the spectroscopic parameters of beauty-partners of from QCD

    T.M.Aliev🇹🇷 · S.Bilmis🇹🇷 · M.Savci🇹🇷

    Motivated by the recent discovery of a new tetra-quark state with two charm quarks and two light quarks by LHCb collaboration, we calculate the spectroscopic parameters, namely, the mass and residues of beauty partners of within QCD sum rules by using hadronic molecular picture. The obtained results are compared with the predictions of different approaches in the literature.

    hep-phhep-exhep-latPRD(2022)·11 citations
  24. 29*

    Asymptotics of transverse momentum broadening in dense QCD media

    Paul Caucal🇺🇸

    We study the asymptotic behaviour of the transverse momentum broadening distribution of an energetic quark or gluon propagating through dense QCD matter, in the large system size limit, taking into account radiative corrections in the double logarithmic approximation. Thanks to a connection between the evolution of the jet quenching parameter and the formation of traveling wave fronts in nonlinear physics, we obtain a formula for the dependence of the characteristic transverse momentum scale of the distribution valid up to terms of order . We briefly discuss the physical implications of this formula for jet quenching and small- phenomenology.

    hep-phnucl-thSciPost Phys.Proc.(2022)·0 citations
  25. 30*

    The Scale Invariant Scotogenic Model: Dark Matter and the Scalar Sector

    Rachik Soualah (University of Sharjah and ICTP Trieste)🇮🇹 · Amine Ahriche (University of Sharjah and ICTP Trieste)🇮🇹

    In this paper, we investigate the mutual impact between the dark matter (DM) requirements and the scalar sector in the scale invariant (SI) scotogenic model. The model is motivated by the neutrino mass and DM within a classically SI framework. It is a SI generalization of the scotogenic model, where the standard model (SM) is extended by a real singlet, an inert scalar doublet and three Majorana singlet fermions, where the lightest one () could play the DM candidate role. In addition to the annihilation channels , the DM can be annihilated via few s-channel processes into SM particles, that are mediated by the Higgs/dilaton. This allows the new Yukawa interactions, that are responsible for neutrino mass generation, to take small values and therefore avoid the mass degeneracy between the CP-even and CP-odd inert scalars unlike the case of the minimal scotogenic model. In contrast to many Majorana DM models, the DM in the SI-scotogenic model couples to the quarks at tree-level, and hence the constraint from the direct detection experiments is very important on the space parameter. The aim of this work is to investigate the correlation between the DM requirements and the scalar sector in this model.

    hep-phhep-exhep-thPRD(2022)·12 citations
  26. 31*

    Kination cosmology from scalar fields and gravitational-wave signatures

    Yann Gouttenoire🇮🇱 · Geraldine Servant🇩🇪 · Peera Simakachorn🇩🇪

    Kination denotes an era in the cosmological history corresponding to an equation of state such that the total energy density of the universe redshifts as the sixth inverse power of the scale factor. This arises if the universe is dominated by the kinetic energy of a scalar field. It has often been motivated in the literature as an era following inflation, taking place before the radiation era. In this paper, we review instead the possibility that kination is disconnected from primordial inflation and occurs much later, inside the Standard Model radiation era. We study the implications on all main sources of primordial gravitational waves. We show how this leads to very distinctive peaked spectra in the stochastic background of long-lasting cosmological sources of gravitational waves, namely the irreducible gravitational waves from inflation, and gravitational waves from cosmic strings, both local and global, with promising observational prospects. We present model-independent signatures and detectability predictions at SKA, LIGO, LISA, ET, CE, BBO, as a function of the energy scale and duration of the kination era. We then argue that such intermediate kination era is in fact symptomatic in a large class of axion models. We analyse in details the scalar field dynamics, the working conditions and constraints in the underlying models. We present the gravitational-wave predictions as a function of particle physics parameters. We derive the general relation between the gravitational-wave signal and the axion dark matter abundance as well as the baryon asymmetry. We investigate the predictions for the special case of the QCD axion. The key message is that gravitational-waves of primordial origin represent an alternative experimental probe of axion models.

    hep-phastro-ph.CO173 citations
  27. 32*

    Soft spin correlations in final-state parton showers

    Keith Hamilton🇬🇧 · Alexander Karlberg🇬🇧 · Gavin P. Salam🇬🇧 · Ludovic Scyboz🇬🇧 · Rob Verheyen🇬🇧

    We introduce a simple procedure that resolves the long-standing question of how to account for single-logarithmic spin-correlation effects in parton showers not just in the collinear limit, but also in the soft wide-angle limit, at leading colour. We discuss its implementation in the context of the PanScales family of parton showers, where it complements our earlier treatment of the purely collinear spin correlations. Comparisons to fixed-order matrix elements help validate our approach up to third order in the strong coupling, and an appendix demonstrates the small size of residual subleading-colour effects. To help probe wide-angle soft spin correlation effects, we introduce a new declustering-based non-global spin-sensitive observable, the first of its kind. Our showers provide a reference for its single-logarithmic resummation. The work in this paper represents the last step required for final-state massless showers to satisfy the broad PanScales next-to-leading logarithmic accuracy goals.

    hep-phJHEP(2022)·55 citations
  28. 33*

    Heavy long-lived coannihilation partner from inelastic Dark Matter model and its signatures at the LHC

    Jinhui Guo🇨🇳 · Yuxuan He🇨🇳 · Jia Liu🇨🇳 · Xiao-Ping Wang🇨🇳

    The coannihilation mechanism is a well-motivated alternative to the simple thermal freeze-out mechanism, where the dark matter relic density can be obtained through the coannihilation with a partner particle of similar mass with dark matter. When the partner particle is neutral, the inelastic nature of dark matter can help it to escape the direct detection limits. In this work, we focus on the coannihilation scenario in which the annihilation cross section is dominated by the partner-partner pair annihilation. We pay special interest on the parameter space where the coannihilation partner is long-lived, which leads to displaced signatures at the collider. In such case, it opens the heavy mass parameter space for the coannihilation dark matter, comparing with those dominated by the partner-dark matter annihilation. Specifically, we propose an inelastic scalar dark matter model with a broken symmetry, which realizes the domination of partner-partner pair annihilation. Then, we study two different realizations of the coannihilation partner decay and the existing constraints from the relic abundance, direct and indirect dark matter detection and the collider searches. We focus on the channel that the long-lived coannihilation partner decays to dark matter plus leptons. The high-luminosity LHC can reach good sensitivities for such heavy dark matter and coannihilation partner around 100--700 GeV.

    hep-phJHEP(2022)·16 citations
  29. 34*

    Analysis of the geometric effect on laser-assisted decay processes

    S. Mouslih🇲🇦 · M. Jakha🇲🇦 · S. El Asri🇲🇦 · S. Taj🇲🇦 · B. Manaut🇲🇦 · E. Siher🇲🇦

    Choosing a specific direction for the propagation of laser field waves often presents a challenge for researchers studying laser-assisted ultrafast quantum processes. They are faced with the question of why exactly this direction and not another. This paper resolves the discussion in this issue regarding decay processes. Therefore, we study theoretically the pion decay process in the presence of a circularly polarized laser field propagating along an arbitrary general direction. Using the first Born approximation and the Dirac-Volkov states for charged particles, we derive an analytic expression for the decay rate. The direction of the laser field was found to have no significant effect on the nature of the result obtained. This study generalizes the results found for a field with a wave vector along the -axis in a recent paper (Phys Rev D 102:073006, 2020). This paper will serve as a justification for the choice of a specific direction for the laser field in laser-assisted decay processes. The effect of the laser field on the total decay rate has also been reported and discussed.

    hep-ph0 citations
  30. 35*

    Universal Deformations

    Aleksey Cherman🇺🇸 · Theodore Jacobson🇺🇸 · Maria Neuzil🇺🇸

    QFTs with local topological operators feature unusual sectors called "universes," which are separated by infinite-tension domain walls. We show that such systems have relevant deformations with exactly-calculable effects. These deformations allow one to dial the vacuum energy densities of the universes. We describe applications of these deformations to confinement in 2d gauge theories, as well as a curious violation of the effective field theory naturalness principle.

    hep-thhep-phSciPost Phys.(2022)·38 citations
  31. 36*

    Classical Limit of Yukawa theory from quantum state perspective

    Qi Chen🇨🇳 · Kaixun Tu🇨🇳 · Qing Wang🇨🇳

    We derive the quantum states corresponding to classical scalar fields in the representation expanded by the eigenstates of quantum field operators. This allows us to directly observe the spatial entanglement structure of quantum states and explore the differences and relationships between quantum superposition and classical superposition. We find that if two classical fields are identical in a certain spatial region, then their corresponding quantum states have the same reduced density matrix in that region. This indicates that knowing the classical field in a local region is sufficient to derive the reduced density matrix for that region. According to the correspondence between classical quantities and quantum states, we derive the equation of motion of the classical theory from the evolution of quantum states in Yukawa theory. This leads to the relativistic classical Yukawa theory, and we further obtain the relativistic corrections to the Yukawa potential.

    hep-thhep-ph2 citations
  32. 38*

    Constraining the generalized uncertainty principle with neutron interferometry

    Fabiano Feleppa🇳🇱 · Hooman Moradpour🇮🇷 · Christian Corda🇮🇳 · Sarah Aghababaei🇮🇷

    The non-zero minimal length arises in various theories of gravity, leading to the so-called generalized uncertainty principle (GUP). In this short paper we analyze the GUP effects on neutron interferometry, showing that the obtained phase shifts depend on the mass and velocity of the particle. New upper bounds on the dimensionless GUP parameter have been found that are in agreement with the literature.

    gr-qchep-phEPL(2021)·11 citations
  33. 39*

    Dark Sector searches with jets

    Janik von Ahnen (for the ATLAS and CMS Collaborations)🇩🇪

    The presence of a non-baryonic Dark Matter (DM) component in the Universe is inferred from the observation of its gravitational interaction. The ATLAS and CMS experiments located at the LHC have developed a broad search program for DM candidates, including resonance searches for the mediator and searches with large missing transverse momentum. Additionally, searches have been conducted in models where the Higgs Sector and the Dark Sector are connected leading for example to invisible Higgs boson decays. The results of recent searches on 13 TeV data, their interplay and interpretation are presented.

    hep-exhep-phSciPost Phys.Proc.(2022)·2 citations
  34. 40*

    Lattice QCD results for the topological up-quark mass contribution: too small to rescue the solution to the strong CP problem

    Constantia Alexandrou🇨🇾 · Jacob Finkenrath🇨🇾 · Lena Funcke🇺🇸 · Karl Jansen🇩🇪 · Bartosz Kostrzewa🇩🇪 · Ferenc Pittler🇨🇾 · Carsten Urbach🇩🇪

    A vanishing Yukawa coupling of the up quark could in principle solve the strong CP problem. To render this solution consistent with current algebra results, the up quark must receive an alternative mass contribution that conserves CP symmetry. Such a contribution could be provided by QCD through non-perturbative topological effects, including instantons. In this talk, we present the first direct lattice computation of this topological mass contribution, using gauge configurations generated by the Extended Twisted Mass collaboration. We use the Iwasaki gauge action, Wilson twisted mass fermions at maximal twist, and dynamical up, down, strange and charm quarks. Our result for the topological mass contribution is an order of magnitude too small to account for the phenomenologically required up-quark mass. This rules out the "massless" up-quark solution to the strong CP problem, in accordance with previous results relying on PT fits to lattice data. The talk is based on [Alexandrou et al., PRL 125, 232001 (2020)], where more details can be found.

    hep-lathep-phPoS(2022)·0 citations
  35. 41*

    Dark matter searches at LHCb

    Titus Mombächer🇪🇸

    In the extensive efforts to understand the nature of Dark Matter and searches at colliders, the LHCb experiment has a unique sensitivity to low mass Dark Matter candidates. These proceedings present recent results and prospects on Dark Matter searches with the LHCb experiment that achieve world-leading sensitivities.

    hep-exhep-phPoS(2022)·3 citations
  36. 42*

    Many-body effects of collective neutrino oscillations

    Zewei Xiong🇩🇪

    Collective neutrino oscillations are critical to determine the neutrino flavor content, which has striking impacts on core-collapse supernovae or compact binary merger remnants. It is a challenging many-body problem that so far has been mainly studied at the mean-field approximation. We use a setup that captures the relevant physics and allows exact solution for a large number of neutrinos. We, for the first time, find quantitative deviation from the mean-field evolution due to many-body decoherence in flavor space. Similar features have been observed in a spin-1 Bose-Einstein condensate, which opens the possibility of experimental explorations of collective flavor phenomena. Our results call for more careful examinations on the possible many-body corrections to collective neutrino oscillations in astrophysical environments.

    astro-ph.HEhep-phPRD(2022)·41 citations
  37. 43*

    From Asymptotic Series to Self-Similar Approximants

    V.I. Yukalov🇷🇺 · E.P. Yukalova🇷🇺

    The review presents the development of an approach of constructing approximate solutions to complicated physics problems, starting from asymptotic series, through optimized perturbation theory, to self-similar approximation theory. The close interrelation of underlying ideas of these theories is emphasized. Applications of the developed approach are illustrated by typical examples demonstrating that it combines simplicity with good accuracy.

    cond-mat.stat-mechhep-phmath-phmath.MPMDPI Physics(2021)·16 citations
  38. 44*

    Gliding down the QCD transition line, from till the onset of conformality

    A.Yu. Kotov (Fachhochsch., Julich and Dubna, JINR)🇩🇪 · M.P. Lombardo (INFN, Florence)🇮🇹 · A. Trunin (Samara U.)🇷🇺

    We review the hot QCD transition with varying number of flavors, from two till the onset of the conformal window. We discuss the universality class for , along the critical line for two massless light flavors, and a third flavor whose mass serves as an interpolator between and . We identify a possible scaling window for the 3D universality class transition, and its crossover to a mean field behaviour. We follow the transition from to larger , when it remains of first order, with an increasing coupling strength; we summarize its known properties, including possible cosmological applications as a model for a strong electroweak transition. The first order transition, and its accompanying second order endpoint, finally morphs into the essential singularity at the onset of the conformal window, following the singular behaviour predicted by the Functional Renormalization Group.

    hep-lathep-phhep-thnucl-thSymmetry(2021)·18 citations
  39. 45*

    Bruno Touschek Remembered. 1921-2021. Bibliography and Sources

    Luisa Bonolis🇩🇪

    The 100th anniversary of Bruno Touschek's birth also marks 60 years since the first beams of electrons and positrons circulated in AdA, the first ever matter-antimatter collider built in Frascati National Laboratories following Touschek's visionary proposal of February 1960. A brief biography, an extensive bibliography, and a description of archives containing documents related to the life and science of the father of electron-positron physics are presented.

    physics.hist-phhep-exhep-phphysics.acc-ph3 citations
  40. 46*

    What Can Possibly Go Wrong?

    Harald W. Griesshammer (George Washington U.)🇺🇸

    A lot. [In this hard, unbiased and objective look at some past and continuing blunders in following Weinberg's suggestions to arrive at a comprehensive description of Nuclear Physics using Effective Field Theories, some names and citations are withheld to protect the innocent.]

    nucl-thhep-phphysics.hist-phFew Body Syst.(2022)·14 citations
  41. 47*

    Confinement and Pseudoscalar Glueball Spectrum from Anisotropic Non-susy D Brane under Hawking-Page transition

    Adrita Chakraborty🇮🇳 · Kuntal Nayek🇮🇳

    Here we analyse the low energy confining phase of the dimensional quenched QCD-like theory in anisotropic non-supersymmetric D brane background with the holographic approach. Two key features of QCD -- flux-tube tension and mass spectrum of pseudoscalar glueball are studied. The non-supersymmetric D branes with anisotropy in time direction are considered as the gravity theory. Tuning the anisotropic parameter, we get the Hawking-Page transition in the gravity background. On the dual theory, this refers the confinement-deconfinement phase transition. Using the Wilson loop, the linear confinement at this regime is effectively confirmed by calculating the flux tube tension from the Nambu-Goto action of a test string with its endpoints located at the boundary. In the next part, we have illustrated numerically the mass spectrum of the pseudoscalar glueball states. We have found, at the transition point, that the glueball mass becomes trivially small. Finally we relate the anisotropy parameter with the temperature and show the variation of the glueball mass at various temperature. Using the Lattice QCD data of , it is found that GeV and GeV at whereas GeV and GeV at .

    hep-thhep-lathep-ph0 citations
  42. 48*

    Cosmological Implications of a Neutrino Mass Detection

    Daniel Green🇺🇸 · Joel Meyers🇺🇸

    The next generation of cosmological surveys are expected to measure a non-zero sum of neutrino masses, even down to the minimum value of 58 meV inferred from neutrino flavor oscillation. The implications of such a measurement for the physics of neutrinos have been well documented; in contrast, the cosmological implications of such a measurement have received less attention. In this paper, we explore the impact of a neutrino mass detection consistent with meV for our understanding of the history and contents of the universe. We focus primarily on three key areas: the thermal history of the universe, clustering of matter on diverse scales, and the application to dark matter and dark sectors. First we show that a detection of non-zero neutrino mass would provide a unique connection between the cosmic neutrino background, which is detected gravitationally, and neutrinos measured on Earth. We then discuss how the consistency of a detection between multiple probes will impact our knowledge of structure formation. Finally, we show how these measurements can be interpreted as sub-percent level tests of dark sector physics.

    astro-ph.COhep-phhep-th31 citations
  43. 49*

    Connecting Matrix Elements to Multi-Hadron Form-Factors

    Andrew W. Jackura🇺🇸

    We discuss developments in calculating multi-hadron form-factors and transition processes via lattice QCD. Our primary tools are finite-volume scaling relations, which map spectra and matrix elements to the corresponding multi-hadron infinite-volume amplitudes. We focus on two hadron processes probed by an external current, and provide various checks on the finite-volume formalism in the limiting cases of perturbative interactions and systems forming a bound state. By studying model-independent properties of the infinite-volume amplitudes, we are able to rigorously define form-factors of resonances.

    hep-lathep-phnucl-thPoS(2022)·0 citations
  44. 50*

    Self-Generated Cosmic-Ray Turbulence Can Explain the Morphology of TeV Halos

    Payel Mukhopadhyay🇺🇸 · Tim Linden🇸🇪

    Observations have shown that spatially extended "TeV halos" are a common (and potentially generic) feature surrounding young and middle-aged pulsars. However, their morphology is not understood. They are larger than the "compact" region where the stellar remnant dominates the properties of the interstellar medium, but smaller than expected in models of cosmic-ray diffusion through the standard interstellar medium. Several explanations have been proposed, but all have shortcomings. Here, we revisit a class of models where the cosmic-ray gradient produced by the central source induces a streaming stability that "self-confines" the cosmic-ray population. We find that previous studies significantly underpredicted the degree of cosmic-ray confinement and show that corrected models can significantly inhibit cosmic-ray diffusion throughout the TeV halo, especially when similar contributions from the coincident supernova remnant are included.

    astro-ph.HEastro-ph.GAhep-phPRD(2022)·67 citations
  45. 51*

    four-quark states from Lattice QCD

    M. Padmanath🇩🇪 · Nilmani Mathur🇮🇳

    We present the results of a lattice calculation of four-quark states with the quark contents where . For the spin 1 states, when the light quark () masses are lighter, we find at least one energy level below the possible elastic threshold energy levels. These calculations are performed on three dynamical highly improved staggered quark ensembles at lattice spacings of about 0.12, 0.09, and 0.06 fm. We use the overlap action for light to charm quarks while a non-relativistic action with non-perturbatively improved coefficients is employed for the bottom quark.

    hep-lathep-exhep-phnucl-thPoS(2022)·17 citations
  46. 52*

    Quantum thermalization of gauge theories: chaos, turbulence and universality

    Niklas Mueller🇺🇸 · Torsten V. Zache🇦🇹 · Robert Ott🇩🇪

    In this talk, we discuss real-time thermalization dynamics of Lattice Gauge Theory in 2+1 spacetime dimensions. While classical thermalization is commonly associated with chaotic behavior, turbulence and universality, the manifestation of these phenomena in quantum mechanical systems is not clear. However, when viewed through the lens of Entanglement Structure, we find that quantum thermalization proceeds in characteristic stages and reveals phenomena remarkably similar to their classical counterparts: chaos, turbulence and universality.

    hep-lathep-phquant-phPoS(2022)·3 citations
  47. 53*

    Triple crossing positivity bounds for multi-field theories

    Zong-Zhe Du🇨🇳 · Cen Zhang🇨🇳 · Shuang-Yong Zhou🇨🇳

    We develop a formalism to extract triple crossing symmetric positivity bounds for effective field theories with multiple degrees of freedom, by making use of symmetric dispersion relations supplemented with positivity of the partial waves, null constraints and the generalized optical theorem. This generalizes the convex cone approach to constrain the coefficient space to higher orders. Optimal positive bounds can be extracted by semi-definite programs with a continuous decision variable, compared with linear programs for the case of a single field. As an example, we explicitly compute the positivity constraints on bi-scalar theories, and find all the Wilson coefficients can be constrained in a finite region, including the coefficients with odd powers of , which are absent in the single scalar case.

    hep-thhep-phJHEP(2021)·56 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.