PaperPanorama

HEP Phenomenology·hep-ph

Thu·Jan 29, 2026

23 papers15 primary·8 cross-listed·reconstructed*

  1. 01*

    Parton Fragmentation Functions Extracted with a Physics-Informed Neural Network

    Si-Wei Dai🇨🇳 · Fu-Peng Li🇨🇳 · Long-Gang Pang🇨🇳 · Xin-Nian Wang🇨🇳 · Ben-Wei Zhang🇨🇳 · Han-Zhong Zhang🇨🇳

    Reliable predictions of many high-energy strong interaction processes rely heavily on the non-perturbative parton fragmentation functions (FFs) extracted from existing experimental data. Conventional methods often require parameterized forms of FFs and additional scale evolution according to the Dokshitzer-Gribov-Lipatov-Altarelli-Parisi (DGLAP) evolution equations. We introduce a novel approach to determining parton FFs using a Physics-Informed Neural Network (PINN). Unlike traditional methods, our approach does not require prior parameterized forms and directly integrates the DGLAP evolution equations into the neural network architecture, allowing the FFs to automatically satisfy these equations. We present new sets of parton FFs extracted from hadron spectra in electron-positron annihilation processes at next-to-leading order (NLO) in pQCD using this new technique. To validate our approach, we calculate charged hadron spectra in proton-(anti)proton collisions using the extracted FFs and demonstrate that the results align well with experimental data across a large range of colliding energies ( = 130, 200, 500, 630, 900, 1800, 2760, 5020, 5440, 7000 GeV). Our findings indicate that the PINN method not only simplifies the extraction process but also enhances the universal applicability of FFs across different energy scales. By eliminating the need for parameterized forms and additional DGLAP evolution, our approach represents a significant step forward toward fast and accurate extractions of non-perturbative quantities such as parton fragmentations functions and parton distribution functions.

    hep-ph2 citations
  2. 02*

    Dark matter motivated sterile neutrino contribution to neutrinoless double beta decay

    Debashree Priyadarsini Das🇮🇳 · Sasmita Mishra🇮🇳

    The exact seesaw relation in a type-I seesaw framework puts constraints on the relations between active and sterile neutrino sectors in terms of their masses and mixing angles. In such a setup, we employ a model-independent approach to investigate the signature of sterile neutrinos in the half-life of the neutrinoless double beta () decay process. In particular, we aim to study the contribution of sterile neutrinos in the mass range ~keV that is motivated by the dark matter constituent of the Universe. Further, the masses of the sterile neutrinos are determined by the active neutrino masses, mixing angles, and phases, and active-sterile mixing angles and -violating phases. The parameter space is constrained by the exact seesaw relation, thereby making the analysis constrained. After capturing the parameter space that can account for keV scale masses for the sterile neutrinos, we adopt the chiral effective field theory approach to calculate the half-life and effective mass in the decay. As the study transitions from the TeV scale to scenarios involving at least one sterile neutrino in the keV mass range, it reveals a significant modification of the effective mass. In particular, the cancellation region associated with the normal mass hierarchy for TeV-scale sterile neutrinos no longer persists when a keV-scale sterile neutrino is introduced, resulting in a finite effective mass that future experiments can probe. Likewise, the involvement of keV-scale sterile neutrino in the inverted mass hierarchy case makes the band distorted and scattered points appear around the main band.

    hep-phEPJC(2026)·0 citations
  3. 03*

    Probing torsion field with Einstein-Cartan theory at the HL-LHC: an angular distribution case study

    S. Elgammal🇪🇬

    This analysis utilizes simulated data privately generated based on the High Luminosity Large Hadron Collider (HL-LHC) configuration to investigate the angular distribution of high-mass dimuon pairs produced during the foreseen proton-proton collisions at a center-of-mass energy of 14 TeV. The study focuses on the cos variable, which is defined in the Collins-Soper frame. In the Standard Model, the production of high-mass dimuon pairs is primarily governed by the Drell-Yan process, which demonstrates a significant forward-backward asymmetry. However, scenarios beyond the Standard Model suggest different shapes for the angular distribution (cos). By observing excess events not predicted by the Standard Model, the angular distribution can help differentiate among these alternative models. Furthermore, we used a simplified Einstein-Cartan model to analyze the simulated data. This analysis established upper limits at the 95\% confidence level regarding the masses of various particles within the model, including a spin-2 dark neutral gauge boson and the torsion field.

    hep-ph0 citations
  4. 04*

    Bjorken Initial Energy Density and Viscous Longitudinal Hydrodynamic Evolution in Xe-Xe Collisions

    S. Biswal🇮🇳 · M. A. Bhat🇮🇳 · A. Nayak🇮🇳 · S. I. Sahoo🇮🇳 · D. Dutta🇮🇳 · D. K. Mishra🇮🇳 · P. K. Sahu🇮🇳

    We present a systematic study of the Bjorken initial energy density in Xe-Xe collisions at TeV, estimated using charged-particle multiplicity data and a generalized transverse overlap geometry applicable beyond the most central collisions. The dependence of the extracted energy density is examined by adopting both a constant formation time and a centrality-dependent formation time derived from Pb-Pb collisions at TeV. Corresponding Bjorken energy density estimates for Pb-Pb collisions are also presented for comparison. Taking the Bjorken energy density and formation time as initial conditions, the subsequent longitudinal evolution of the quark-gluon plasma (QGP) formed in these collisions is studied. Both ideal and first-order viscous boost-invariant hydrodynamics are employed to assess the influence of dissipation. We observe that viscous effects slow the longitudinal expansion and lead to entropy production dominated by early-time dynamics. The lifetime of the QGP is observed to increase with centrality and is substantially enhanced by viscous effects. These effects are highly sensitive to the choice of formation time, particularly in peripheral collisions. A comparative analysis of Xe-Xe and Pb-Pb collisions demonstrates that the longitudinal evolution is primarily controlled by the initial energy density scale set by the Bjorken prescription. Consequently, when this scale is comparable, both systems exhibit nearly identical evolution patterns, while appreciable distinctions emerge in peripheral collisions due to system-size and geometric effects.

    hep-phnucl-th0 citations
  5. 05*

    Searching for a state in the reaction

    Wen-Tao Lyu🇨🇳 · Eulogio Oset🇪🇸

    We propose the reaction to observe a state around MeV, predicted at lower masses than expected from comparison with the states, stemming as a consequence of the important role played by coupled channels in the case, which does not appear in the case. That state decays to with a width of about keV. The reaction is related to , which has already been observed. We predict a branching fraction for ; of the order of , which is within present capabilities of the LHCb collaboration. The observation of this state would bring valuable light on the nature of the and states and the role played by coupled channels in hadron structure and hadron reactions.

    hep-phPLB(2026)·1 citation
  6. 06*

    Photon emission due to vacuum instability under the action of a quasi-constant electric field

    T. C. Adorno🇨🇳 · S.P. Gavrilov🇷🇺 · D. M. Gitman🇷🇺

    Following a nonperturbative formulation of strong-field QED developed in our earlier works, we consider photon emission accompanying vacuum instability under the action of a quasi-constant strong electric field of finite duration T. We construct closed formulas for the total probabilities and study the photon emission accompanying an electron-positron pair creation from a vacuum. We establish the domain of the applicability of the locally constant field approximation (LCFA) for the photon emission. We study angular and polarization distribution of the emission as well as emission characteristics in a high-frequency approximations with respect of 1/T. The results presented in this work is suitable to a further development of the LCFA proposed in [Phys. Rev. D 95, 076013 (2017)].

    hep-phhep-thTheor.Math.Phys.(2026)·0 citations
  7. 07*

    Decoding and : The role of -wave charmed mesons

    Jian-Bo Cheng🇨🇳 · Zi-Yang Lin🇨🇳 · Jun-Zhang Wang🇨🇳 · Shi-Lin Zhu🇨🇳

    In this work, we perform a systematic investigation of the hidden-charm tetraquark states with within the hadronic molecular picture, placing particular emphasis on systems composed of an -wave meson and a -wave meson. Adopting the One-Boson Exchange potential, we solve the Schrödinger equation in momentum space via the Complex Scaling Method. A crucial feature of our approach is the rigorous treatment of the unstable nature of the -wave constituents by incorporating three-body decay effects arising from self-energy corrections and the static limit approximation. Our results demonstrate that these three-body dynamics play a crucial role in determining the pole positions, specifically in reproducing the large decay widths observed experimentally. We identify several broad resonances in the and systems as candidates for the , while the significantly broader resonances in the and sectors are suggested as candidates for the . Focusing on the assignment as a specific case study, we further analyze the line shape of the candidate using a Flatté-like parametrization with energy-dependent self-energy terms, providing predictions for its open-charm decay modes to guide future experimental searches.

    hep-phPRD(2026)·4 citations
  8. 08*

    Graviton energy spectra arising from the KSVZ axion model

    Yonghua Wang🇨🇳 · Lin-Yun He🇨🇳 · Wei Chao🇨🇳 · Yu Gao🇨🇳

    Axion, the goldstone boson arising from the spontaneous breaking of a global Peccei-Quinn symmetry, provides a dynamical solution to the strong CP problem and is an excellent dark matter candidate. Various experiments are designed to search for the axion, however no confirmative signal has been observed. On the other hand, there are also hypothetical heavy particles in axion models, such as the heavy scalar , which is the CP-even component of the complex scalar that carries charge, and the vector-like heavy quark (VLQ) in the Kim-Shifman-Vainshtein-Zakharov~(KSVZ) axion model. Studying signals induced by them are helpful for axion searches. In this paper, we calculate the graviton bremsstrahlung energy spectrum arising from the decay of the heavy scalar or VLQ in the KSVZ model. The result shows that these heavy particles can emit ultrahigh-frequency gravitational waves (GWs), with the peak frequency depending on the model's parameter inputs. In addition, the graviton spectrum is distinguished from the thermal GW background at high frequencies if there is an early matter-dominated era induced by these heavy particles. Future measurements of ultrahigh-frequency GWs may provide indirect evidence for the KSVZ axion.

    hep-phastro-ph.CO1 citation
  9. 09*

    Elastic phase shift analysis reveals the geometric origin of the residue phase

    S. Ceci🇭🇷 · R. Omerović🇧🇦 · H. Osmanović🇧🇦 · M. Uroić🇭🇷 · M. Vukšić🇬🇧 · B. Zauner🇭🇷

    We show that the complex-plane structure of light hadron resonances is governed by a unified geometric framework where the threshold position plays a decisive role. By applying this framework to , , and phase shifts, we show that the residue phase is primarily determined by the geometric phase (the angle between pole and real axis seen from the threshold). While vector resonances exhibit excellent alignment with this geometric baseline, scalar resonances show systematic deviations of --, which we identify as the dynamical imprint of Adler zeros.

    hep-ph1 citation
  10. 10*

    Investigation on the photoproduction of bottom-charmed baryon within NRQCD

    Juan-Juan Niu🇨🇳 · Hong-Hao Ma🇨🇳

    We present a further theoretical study of the orbital -wave bottom-charmed baryon within the framework of nonrelativistic QCD (NRQCD), considering both the direct photoproduction channel and the resolved photoproduction channel . At future linear colliders, ILC and CLIC, the initial photons can be emitted from the laser back-scattering (LBS) and then the parton gluon can be emitted from the photon. The formation of can be modeled in two-step: a compact diquark state is formed first and subsequently captures a light quark from the vacuum to hadronize into the baryon . The color and spin quantum number of -diquark can be , , or with . Based on the collision energies and design luminosity of ILC and CLIC, the cross sections, the differential distributions and the estimated produced events of baryon have been analyzed. The results show that the contribution of the orbital excited -wave baryon can reach 7%-9% of the -wave, providing a non-negligible contributions.

    hep-ph0 citations
  11. 11*

    Photon angular momentum near Planck scale

    Kenil Solanki🇮🇳 · Gaurav Bhandari🇮🇳 · S. D. Pathak🇮🇳 · Vikash Kumar Ojha🇮🇳

    We study the angular momentum structure of the gauge field in Lorentz covariant relativistic generalized uncertainty principle (RGUP) framework incorporating Planck scale minimal length effects. Using Noether's theorem for higher derivative RGUP-modified gauge field Lagrangian, we obtain the canonical and symmetric (Belinfante) energy-momentum tensors and the corresponding gauge spin and orbital angular momentum currents. We show that the canonical and Belinfante-Rosenfeld angular-momentum tensors continue to satisfy the standard conservation law in the presence of Planck-scale corrections. %These results support the stability of fundamental conservation laws under high-energy modifications. The RGUP corrections introduce higher-order contributions to the angular momentum density and momentum flow, yielding a modified Poynting vector, with the Maxwell limit recovered for vanishing RGUP parameter.

    hep-phAnnals Phys.(2026)·1 citation
  12. 12*

    High precision heavy-boson-jet substructure with energy correlators

    Jack Holguin🇬🇧 · Ian Moult🇺🇸 · Aditya Pathak🇩🇪 · Massimiliano Procura🇦🇹 · Siddharth Sule🇬🇧

    Energy-correlator-based jet substructure has gained significant attention in recent years. One of the notable applications has been the study of multi-scale jets, where distinct physical scales manifest as features localised in different angular regions of the correlator. In this article, we present the first high-precision study of energy correlators on the simplest multi-scale jets: heavy boson jets. In such systems, the boson mass introduces an additional scale, generating a sharp peak at angles . We show that this feature can be computed directly by boosting the EEC spectrum measured in at the pole. We identify that the peak arises from boosting the well-studied Sudakov factorisation governing the back-to-back limit of the two-point correlator. As a result, the feature is controlled by Sudakov resummation, not a Breit-Wigner-like structure in the decay, and is therefore calculable with exceptional precision. We provide predictions at NLL accuracy for both -tagged jets and di- production, and compare them to Herwig and Pythia simulations, finding close agreement. We also demonstrate that the boosted- spectrum can be constructed directly by boosting OPAL measurements at the pole. In this light, energy-correlator jet substructure on the hadronic decays of heavy bosons at the LHC provide access to clean, lepton-collider-like measurements across a wide range of effective centre-of-mass energies set by the boson jet transverse momentum.

    hep-phhep-exJHEP(2026)·7 citations
  13. 13*

    Precision Jet Substructure of Boosted Boson Decays with Energy Correlators

    Anjie Gao🇺🇸 · Kyle Lee🇺🇸 · Xiaoyuan Zhang🇺🇸

    We initiate the precision study of boosted jet substructure using energy correlators, applying this framework to hadronic Higgs decays. We demonstrate that the two-body decay of the Higgs manifests as a distinct angular peak at for Lorentz boost factor . We show that infrared scales, such as the dead-cone effect and confinement transition, are also resolved within the boosted distribution. Precision analytic studies of boosted jet substructure may enable precision electroweak studies and open new avenues for new physics searches.

    hep-phhep-exPRD(2026)·7 citations
  14. 14*

    Probing Bose-enhanced Inflaton Decay with Gravitational Waves

    Nicolás Bernal🇦🇪 · Quan-feng Wu🇨🇳 · Xun-Jie Xu🇨🇳 · Yong Xu🇨🇦

    We investigate cosmic reheating dynamics in the presence of a transient condensate formed by bosonic decay products of the inflaton. We show that the emergence of such a condensate and the corresponding Bose enhancement can dramatically increase the efficiency of inflaton decay, giving rise to qualitatively new reheating dynamics beyond the standard perturbative picture. As a consequence, graviton production from inflaton decay processes is significantly amplified by Bose enhancement effects, leading to a stochastic gravitational-wave background with a potentially observable amplitude, even in the low-frequency regime.

    hep-phJHEP(2026)·4 citations
  15. 15*

    Catalog of electroweak scalar manifolds

    Juan Carlos Criado🇪🇸

    The local structure of the Higgs sector around the vacuum does not uniquely determine its global properties. Most of the current experimental data provides only local information, which allows for a rich variety of global features, including several distinct topologies of the scalar manifold, and the existence of zero, one, or two fixed points of the symmetry transformations. Here, I provide, under general conditions, a complete classification of realizations of the electroweak symmetry with minimal field content -- the three would-be Goldstone bosons and the Higgs -- and outline some of their physical consequences.

    hep-phhep-thPRD(2026)·0 citations
  16. 16*

    Exploring the properties of the Hadronic Phase in Heavy-Ion Collisions at RHIC Energies via Partial Chemical Equilibrium

    Rishabh Sharma🇮🇳 · Chitrasen Jena🇮🇳 · Volodymyr Vovchenko🇺🇸

    The hadronic phase in heavy-ion collisions plays a crucial role in shaping the final-state hadron abundances. In this work, we study Au+Au collisions at = 7.7-200 GeV using the Hadron Resonance Gas model in Partial Chemical Equilibrium (HRG-PCE). By fitting the yields of stable hadrons and short-lived resonances such as K, we extract both chemical and kinetic freeze-out temperatures as functions of center-of-mass energy and centrality. The analysis, performed using the Thermal-FIST package, avoids assumptions about radial flow profile or freeze-out hypersurfaces. Furthermore, we estimate the baryon annihilation freeze-out temperature from the experimentally measured p ratio, using the HRG-PCE framework extended to include reactions. The inferred annihilation freeze-out temperature lies between the chemical and kinetic freeze-out temperatures, suggesting that baryon annihilation remains active in the early hadronic phase but ceases prior to kinetic freeze-out. These results provide a consistent picture of the sequential decoupling of hadronic processes and demonstrate that inelastic hadronic interactions significantly influence the chemical composition of the system between chemical and kinetic freeze-outs at RHIC energies.

    nucl-thhep-exhep-ph0 citations
  17. 17*

    An Analytic Scale-dependent Dark Matter Profile and the Baryonic Tully-Fisher Relation

    V.K. Oikonomou🇬🇷

    In this work we use the recently introduced concept of self-interacting dark matter with scale-dependent equation of state, and we provide an analytic model of dark matter that can produce viable rotation curves even for low-surface-brightness galaxies, irregular galaxies, low-luminosity spirals and dwarf galaxies, all known to challenge the cold dark matter description. The radius dependent effective equation of state of the self-interacting dark matter model we shall introduce is assumed to be an isothermal equation of state of the form , where the energy density will have the form , while the entropy function is . The resulting model is confronted in detail with the SPARC galaxy data and 175 galaxies are used and tested. It proves that the analytic model can successfully produce the rotation curves of 116 galaxies, most of which are small mass spirals, irregular galaxies, low-surface-brightness and low-luminosity spirals and dwarf galaxies. On the other hand, 59 galaxies cannot be successfully described by our analytic model. We tested statistically the correlation between the parameter of the entropy function corresponding to the viable galaxies, and the flat rotation velocity and the maximum rotation velocity of the galaxies from the SPARC data. We also examined the baryon mass - relation and the luminosity - relation. We have been able to produce the baryonic Tully-Fisher relation for the viable galaxies, directly from the correlation - and -, with the resulting relation being , however we failed to produce the canonical Tully-Fisher relation.

    gr-qcastro-ph.COastro-ph.GAhep-ph+11 citation
  18. 18*

    Baryon Transition Form Factors from Dynamical Coupled-Channel Analyses

    Yu-Fei Wang🇨🇳

    In this talk, the electromagnetic transition form factors from the nucleon ground state to twelve and states are exhibited and discussed. Those results are extracted through a comprehensive coupled-channel approach -- the Juelich-Bonn-Washington model, with the center-of-mass energy ranging from GeV to GeV, and the photon virtuality up to GeV. The extraction is based on electroproduction data points of , , and channels, with additionally about data points in the hadronic sector as well as photoproductions as boundary conditions. The form factors are defined from the residues at the corresponding resonance poles in the multipole amplitudes. Uncertainties are also estimated by the exploration of the parameter space. The qualitative behavior of the transition form factors of and here are in agreement with the previous studies, while for the other states, there has not been literature results that are also defined at the resonance poles.

    nucl-thhep-phnucl-exPoS(2026)·0 citations
  19. 19*

    Toward a Unified Picture of Confinement and Baryon Structure

    Fan Lin🇨🇳 · Xinyang Wang🇨🇳

    In this work, we investigate the infrared structure of quantum chromodynamics from the perspective of the Cho-Faddeev-Niemi decomposition and the Faddeev-Niemi effective theory of Yang-Mills fields. We argue that the topological solitons of the Faddeev-Niemi theory, namely gluon knots characterized by the Hopf invariant, should be regarded as the relevant ground-state degrees of freedom of Yang-Mills theory in the deep infrared region. In this framework, gluon knots provide a unified description of monopole condensation and the center-vortex confinement mechanism. We further propose that baryons are composite objects consisting of quarks immersed in a gluon-knot background. The monopole condensate associated with the gluon knot realizes dual superconductivity, squeezes color-electric flux into flux tubes, and naturally generates the -shaped confinement structure of baryons. Simultaneously, the strong local color-magnetic field generated by the gluon knot induces chiral symmetry breaking through magnetic catalysis and topological vacuum fluctuations. We show that the Hopf invariant of the gluon knot is closely related to the topology of Yang-Mills vacua and discuss its connection with the axial anomaly and instanton-induced chiral symmetry breaking. Furthermore, the topological current associated with gluon knots provides a natural carrier of gluon angular momentum and may account for a substantial fraction of the proton spin. The resulting picture establishes a possible connection between the infrared topology of Yang-Mills theory and the internal structure of baryons, providing a unified framework for confinement, chiral symmetry breaking, and baryon structure in QCD.

    hep-thhep-phnucl-th0 citations
  20. 20*

    Overview of tau lepton physics at a super tau-charm facility

    Zhiqing Zhang🇫🇷

    An overview of tau lepton physics is presented, using the tau lepton discovery and its precision measurements as examples to illustrate the importance of the energy region to be covered by the super tau-charm factory. By presenting the current measurement status of the major physics topics, the emphasize is put on pointing out a few open issues and possibilities for the super tau-charm factory.

    hep-exhep-phInt.J.Mod.Phys.A(2026)·0 citations
  21. 21*

    Localization-delocalization transition at weak coupling in two-color matrix QCD

    Nirmalendu Acharyya🇮🇳 · Prasanjit Aich🇮🇳 · Arkajyoti Bandyopadhyay🇮🇳 · Sachindeo Vaidya🇮🇳

    We numerically investigate the matrix model of two-color one-flavor adjoint QCD (matrix-QCD) in the weak coupling regime (small ) and in the chiral limit. The Yang-Mills potential has two distinct gauge invariant minima: one at and the other at . We show that when the chiral chemical potential , there is a quantum phase transition at : for , the ground state wavefunction is localized near , while for , the ground state is delocalized over the gauge configuration space. The transition between these two phases is singular, with the ground state at being distinctly different from that of . At , we show that the square of the chromoelectric field vanishes, strongly suggesting that the system is in a ``dual superconductor" phase. Numerical evidence shows that the localization-delocalization phenomenon holds for the 1st and 2nd excited states as well, leading us to conjecture that there are an infinite number of isolated singular points accumulating to . For , the model formally possesses supersymmetry. We show that in the localized phase (i.e. for ) the supermultiplet structure is disrupted and SUSY is spontaneously broken.

    hep-thhep-lathep-phPRD(2026)·3 citations
  22. 22*

    A scalable flow-based approach to mitigate topological freezing

    Claudio Bonanno🇪🇸 · Andrea Bulgarelli🇩🇪 · Elia Cellini🇬🇧 · Alessandro Nada🇮🇹 · Dario Panfalone🇮🇹 · Davide Vadacchino🇬🇧 · Lorenzo Verzichelli🇮🇹

    As lattice gauge theories with non-trivial topological features are driven towards the continuum limit, standard Markov Chain Monte Carlo simulations suffer for topological freezing, i.e., a dramatic growth of autocorrelations in topological observables. A widely used strategy is the adoption of Open Boundary Conditions (OBC), which restores ergodic sampling of topology but at the price of breaking translation invariance and introducing unphysical boundary artifacts. In this contribution we summarize a scalable, exact flow-based strategy to remove them by transporting configurations from a prior with a OBC defect to a fully periodic ensemble, and apply it to 4d SU(3) Yang--Mills theory. The method is based on a Stochastic Normalizing Flow (SNF) that alternates non-equilibrium Monte Carlo updates with localized, gauge-equivariant defect coupling layers implemented via masked parametric stout smearing. Training is performed by minimizing the average dissipated work, equivalent to a Kullback--Leibler divergence between forward and reverse non-equilibrium path measures, to achieve more reversible trajectories and improved efficiency. We discuss the scaling with the number of degrees of freedom affected by the defect and show that defect SNFs achieve better performances than purely stochastic non-equilibrium methods at comparable cost. Finally, we validate the approach by reproducing reference results for the topological susceptibility.

    hep-latcond-mat.stat-mechcs.LGhep-phPoS(2026)·3 citations
  23. 23*

    Constraining high-energy neutrinos from tidal disruption events with IceCube high-energy starting events

    Mainak Mukhopadhyay🇺🇸 · Patrick Wusinich🇺🇸 · Kohta Murase🇺🇸

    Tidal disruption events (TDEs) have been proposed as candidate sources of high-energy neutrinos. Successful and choked jets, as well as the accretion disk, corona, wind, and outflow regions in a TDE have been examined and shown to produce TeV - PeV neutrinos. In this work, we use the IceCube 12.5 year high energy starting events (HESE) dataset and perform a maximum likelihood analysis to investigate the spatial and temporal correlations between HESE dataset and a selected sample of 89 TDEs. Our results indicate that the currently observed data do not show any significant correlation and hence is consistent with the background only hypothesis. Using this result, we place constraints on the fraction of TDEs harboring intrinsic jets () and the corresponding isotropic-equivalent cosmic ray (CR) energy (). We note that even with limited statistics, we can constrain the parameter space as erg for at more than 90% C.L. Finally, we discuss the theoretical implications of our results and the limits on the all-sky diffuse neutrino flux from TDEs. With more observational data in the electromagnetic band for TDEs and neutrino observations from IceCube and KM3NeT, our analysis can be used to place stringent constraints on physical parameters associated with TDEs.

    astro-ph.HEhep-ph2 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.