PaperPanorama

HEP Phenomenology·hep-ph

Wed·Nov 15, 2017

25 papers—18 primary·7 cross-listed·reconstructed*

  1. 01*

    Gravitational Leptogenesis, Reheating, and Models of Neutrino Mass

    Peter Adshead🇺🇸 · Andrew J. Long🇺🇸 · Evangelos I. Sfakianakis🇳🇱

    Gravitational leptogenesis refers to a class of baryogenesis models in which the matter-antimatter asymmetry of the universe arises through the standard model lepton-number gravitational anomaly. In these models chiral gravitational waves source a lepton asymmetry in standard model neutrinos during the inflationary epoch. We point out that gravitational leptogenesis can be successful in either the Dirac or Majorana neutrino mass scenario. In the Dirac mass scenario, gravitational leptogenesis predicts a relic abundance of sterile neutrinos that remain out of equilibrium, and the lepton asymmetry carried by the standard model sector is unchanged. In the Majorana mass scenario, the neutrinos participate in lepton-number-violating interactions that threaten to washout the lepton asymmetry during post-inflationary reheating. However, we show that a complete (exponential) washout of the lepton asymmetry is prevented if the lepton-number-violating interactions go out of equilibrium before all of the standard model Yukawa interactions come into equilibrium. The baryon and lepton asymmetries carried by right-chiral quarks and leptons are sequestered from the lepton-number violation, and the washout processes only suppress the predicted baryon asymmetry by a factor of . The sign of depends on the model parameters in such a way that a future measurement of the primordial gravitational wave chirality would constrain the scale of lepton-number violation (heavy Majorana neutrino mass).

    hep-phastro-ph.COhep-thPRD(2018)·49 citations
  2. 02*

    Challenges posed by non-standard neutrino interactions in the determination of at DUNE

    K. N. Deepthi🇮🇳 · Srubabati Goswami🇮🇳 · Newton Nath🇨🇳

    One of the primary objectives of Deep Underground Neutrino Experiment (DUNE) is to discover the leptonic CP violation and to identify it's source. In this context, we study the impact of non-standard neutrino interactions (NSIs) on observing the CP violation signal at DUNE. We explore the impact of various parameter degeneracies introduced by non-zero NSI and identify which of these can influence the CP violation sensitivity and CP precision of DUNE, by considering NSI both in data and in theory. In particular, we study how the CP sensitivity of DUNE is affected because of the intrinsic hierarchy degeneracy which occurs when the diagonal NSI parameter and .

    hep-phNPB(2018)·46 citations
  3. 03*

    Global Constraints on Top Quark Anomalous Couplings

    Frédéric Déliot🇫🇷 · Ricardo Faria🇵🇹 · Miguel C. N. Fiolhais🇺🇸 · Pedro Lagarelhos🇵🇹 · António Onofre🇵🇹 · Christopher M. Pease🇺🇸 · Ana Vasconcelos🇵🇹

    The latest results on top quark physics, namely single top quark production cross sections, -boson helicity and asymmetry measurements are used to probe the Lorentz structure of the vertex. The increase of sensitivity to new anomalous physics contributions to the top quark sector of the Standard Model is quantified by combining the relevant results from Tevatron and the Large Hadron Collider. The results show that combining an increasing set of available precision measurements in the search for new physics phenomena beyond the Standard Model leads to significant sensitivity improvements, especially when compared with the current expectation for the High Luminosity run at the LHC.

    hep-phPRD(2018)·17 citations
  4. 04*

    Infrared singularities of QCD scattering amplitudes in the Regge limit to all orders

    Simon Caron-Huot🇨🇦 · Einan Gardi🇬🇧 · Joscha Reichel🇬🇧 · Leonardo Vernazza🇳🇱

    Scattering amplitudes of partons in QCD contain infrared divergences which can be resummed to all orders in terms of an anomalous dimension. Independently, in the limit of high-energy forward scattering, large logarithms of the energy can be resummed using Balitsky-Fadin-Kuraev-Lipatov theory. We use the latter to analyze the infrared-singular part of amplitudes to all orders in perturbation theory and to next-to-leading-logarithm accuracy in the high-energy limit, resumming the two-Reggeon contribution. Remarkably, we find a closed form for the infrared-singular part, predicting the Regge limit of the soft anomalous dimension to any loop order.

    hep-phhep-thJHEP(2018)·46 citations
  5. 05*

    Polarization Transfer in Weak Pion Production off the Nucleon

    Krzysztof M. Graczyk🇵🇱 · Beata E. Kowal🇵🇱

    Polarization transfer (PT) observables in the single pion production induced by the charged current interaction of the neutrino with the nucleon are examined. The polarization components of the final nucleon and the charged lepton are calculated within two models for the pion production. The predictions are made for neutrino energy of the order of 1~GeV as well as for the T2K energy distribution. It is demonstrated that the PT observables, the degree of polarization and the polarization components of outgoing fermions, are sensitive on assumptions about the nonresonant background model. In particular it is shown that the normal components of the polarization of the outgoing nucleon and the lepton are determined by the interference between the resonant (RES) and nonresonant (NB) amplitudes. Moreover the sign of the normal component of the polarization of the charged lepton is fixed by the relative sign between the RES and the NB amplitudes.

    hep-phnucl-thPRD(2018)·15 citations
  6. 06*

    Heavy quark form factors at two loops in perturbative QCD

    J. Ablinger🇦🇹 · A. Behring🇩🇪 · J. Blümlein🇩🇪 · G. Falcioni🇳🇱 · A. De Freitas🇩🇪 · P. Marquard🇩🇪 · N. Rana🇩🇪 · C. Schneider🇦🇹

    We present the results for heavy quark form factors at two-loop order in perturbative QCD for different currents, namely vector, axial-vector, scalar and pseudo-scalar currents, up to second order in the dimensional regularization parameter. We outline the necessary computational details, ultraviolet renormalization and corresponding universal infrared structure.

    hep-phhep-exActa Phys.Polon.B(2017)·0 citations
  7. 07*

    Finite volume effects on the chiral phase transition from Dyson-Schwinger equations of QCD

    Bo-Lin Li🇨🇳 · Zhu-Fang Cui🇨🇳 · Bo-Wen Zhou🇨🇳 · Sun An🇨🇳 · Li-Ping Zhang🇨🇳 · Hong-Shi Zong🇨🇳

    Within the framework of Dyson-Schwinger equations of QCD, we study the finite volume effects on the chiral phase transition, especially the influence on the position of the possible pseudo-critical end point (pCEP). The results show that in the chiral limit case (the current quark mass ), the absolute value of quark condensate decreases for smaller volumes, and more interestingly, so does the pseudo-critical temperature , which is in agreement with the Polyakov Nambu--Jona-Lasinio model result and opposite to the Polyakov linear sigma model prediction. These conclusions hold for case in our calculations. Moreover, the results of pCEP as a function of different volumes show that of pCEP also decreases for smaller volumes, but of pCEP will increase, which are qualitatively more close to Polyakov linear sigma model results. For our model setup, results for systems with a size larger than (5 fm) closely approximate those from infinite volume, but if the volume is smaller, the corrections are non-negligible, even significantly affect signatures of the results from an infinite system. There also exists some possibility that, if the system size is too small, the whole phase transition would be crossover, which means no pCEP exists at all. It is no doubt that, finite volume effects deserve further researches.

    hep-phNPB(2019)·32 citations
  8. 08*

    Dark Matter Production in an Early Matter Dominated Era

    Manuel Drees🇩🇪 · Fazlollah Hajkarim🇩🇪

    We investigate dark matter (DM) production in an early matter dominated era where a heavy long-lived particle decays to radiation and DM. In addition to DM annihilation into and thermal DM production from radiation, we include direct DM production from the decay of the long-lived particle. In contrast to earlier treatments the temperature dependence of the number of degrees of freedom in the Standard Model (SM) plasma is treated carefully. Besides the well-known cases of thermal hot and cold DM, additional regions of parameter space with the approximately correct DM relic density appear. In some of these regions the temperature dependence of can change the final DM density by several hundred percent. Furthermore, we analyze the effect of allowing nonvanishing initial abundances for radiation and DM. We find an upper bound on the mass of the long-lived particle if the DM annihilation cross section is below that corresponding to thermal WIMP (Weakly Interactive Massive Particle) DM in standard cosmology.

    hep-phJCAP(2018)·91 citations
  9. 09*

    Probing a Four Flavour vis-a-vis Three Flavour Neutrino Mixing for UHE Neutrino Signals at a 1 Detector

    Madhurima Pandey🇮🇳 · Debasish Majumdar🇮🇳 · Amit Dutta Banik🇮🇳

    We consider a four flavour scenario for the neutrinos where an extra sterile neutrino is introduced with the three families of active neutrinos and study the deviation from three flavour scenario in the ultra high energy (UHE) regime. We calculate the possible muon and shower yields at a 1 Km detector such as ICECUBE for these neutrinos from distant UHE sources namely Gamma Ray Bursts (GRBs) etc. Similar estimations for muon and shower yields are also obtained for three flavour case. Comparing the two results we find considerable differences of the yields for these two cases. This can be useful for probing the existence of a fourth sterile component using UHE neutrino flux.

    hep-phPRD(2018)·6 citations
  10. 10*

    Test of Space-Time Non-Commutativity at the Future Circular Collider

    Paolo Castorina🇮🇹

    The Future Circular Collider (FCC) is a crucial step forward to study new Physics beyond the standard model and to test fundamental aspects as space-time minimal length and Lorentz violations. As an example, a possible enhancement of pair production due to non-commutative effects, catalyzed by the huge magnetic field produced at the beginning of a heavy ion collision at FCC, is discussed. In noncommutative electrodynamics a free photon in the magnetic background can produce a pair. In particular for hard photons with transverse energy GeV at the beginning of the collision and for a particular kinematical setting of the pair , i.e. large total transverse momentum in the reaction plane and invariant mass in the range MeV, the non-commutative contribution, evaluated with the present bound of the non-commuativity fundamental area , can be significant. Other, more exotic, possible signatures of space-time non-commutativity are also considered.

    hep-phInt.J.Mod.Phys.A(2017)·0 citations
  11. 11*

    Covariant Extension of the GPD overlap representation at low Fock states

    N. Chouika🇫🇷 · C. Mezrag🇮🇹 · H. Moutarde🇫🇷 · J. Rodríguez-Quintero🇪🇸

    We present a novel approach to compute Generalized Parton Distributions within the Lightfront Wave Function overlap framework. We show how to systematically extend Generalized Parton Distributions computed within the DGLAP region to the ERBL one, fulfilling at the same time both the polynomiality and positivity conditions. We exemplify our method using pion Lightfront Wave Functions inspired by recent results of non-perturbative continuum techniques and algebraic nucleon Lightfront Wave Functions. We also test the robustness of our algorithm on reggeized phenomenological parameterizations. This approach paves the way to a better understanding of the nucleon structure from non-perturbative techniques and to a unification of Generalized Parton Distributions and Transverse Momentum Dependent Parton Distribution Functions phenomenology through Lightfront Wave Functions.

    hep-phnucl-thphysics.comp-phEPJC(2017)·55 citations
  12. 12*

    A radiative seesaw model with higher order terms under an alternative

    Takaaki Nomura🇰🇷 · Hiroshi Okada🇹🇼

    We propose a model based on an alternative gauge symmetry with 5 dimensional operators in the Lagrangian, and we construct the neutrino masses at one-loop level, and discuss lepton flavor violations, dark matter, and the effective number of neutrino species due to two massless particles in our model. Then we search allowed region to satisfy the current experimental data of neutrino oscillation and lepton flavor violations without conflict of several constraints such as stability of dark matter and the effective number of neutrino species, depending on normal hierarchy and inverted one.

    hep-phPLB(2018)·12 citations
  13. 13*

    Scale hierarchies, symmetry breaking and particle spectra in SU(3)-family extended SUSY trinification

    José E. Camargo-Molina🇸🇪 · António P. Morais🇵🇹 · Astrid Ordell🇸🇪 · Roman Pasechnik🇸🇪 · Jonas Wessén🇸🇪

    A unification of left-right \rm{SU}(3)_\rm{L}\times \rm{SU}(3)_\rm{R}, colour \rm{SU}(3)_\rm{C} and family \rm{SU}(3)_\rm{F} symmetries in a maximal rank-8 subgroup of is proposed as a landmark for future explorations beyond the Standard Model (SM). We discuss the implications of this scheme in a supersymmetric (SUSY) model based on the trinification gauge and global \rm{SU}(3)_\rm{F} family symmetries. Among the key properties of this model are the unification of SM Higgs and lepton sectors, a common Yukawa coupling for chiral fermions, the absence of the -problem, gauge couplings unification and proton stability to all orders in perturbation theory. The minimal field content consistent with a SM-like effective theory at low energies is composed of one -plet per generation as well as three gauge and one family octets inspired by the fundamental sector of . The details of the corresponding (SUSY and gauge) symmetry breaking scheme, multi-scale gauge couplings' evolution, and resulting effective low-energy scenarios are discussed.

    hep-phhep-thPRD(2019)·24 citations
  14. 14*

    in a hadronic medium

    L. M. Abreu🇧🇷 · F. S. Navarra🇧🇷 · M. Nielsen🇧🇷 · A. L. Vasconcellos🇧🇷

    In this work we investigate the (called simply ) abundance in the hot hadron gas produced in the late stage of heavy ion collisions. We use effective Lagrangians to calculate the thermally averaged cross sections of production in processes such as and also of its absorption in the corresponding inverse processes. We then solve the rate equation to follow the time evolution of the multiplicity, and the results remarkably suggest that this quantity is not significantly affected by the considered reactions. The number of 's produced at the end of the quark-gluon plasma phase remains constant during the hadron phase.

    hep-phEPJC(2018)·9 citations
  15. 15*

    How to measure the linear polarization of gluons in unpolarized proton using the heavy-quark pair leptoproduction

    A.V. Efremov🇷🇺 · N.Ya. Ivanov🇦🇲 · O.V. Teryaev🇷🇺

    We study the azimuthal and asymmetries in heavy-quark pair leptoproduction, , as probes of linearly polarized gluons inside unpolarized proton, where the azimuth is the angle between the lepton scattering plane and the heavy quark production plane . First, we determine the maximal values for the and asymmetries allowed by the photon-gluon fusion with unpolarized gluons; these predictions are large, and , respectively. Then we calculate the contribution of the transverse-momentum dependent gluonic counterpart of the Boer-Mulders function, , describing the linear polarization of gluons inside unpolarized proton. Our analysis shows that the maximum values of the azimuthal distributions depend strongly on the gluon polarization; they vary from 0 to 1 depending on . We conclude that the azimuthal and asymmetries in heavy-quark pair leptoproduction are predicted to be large and very sensitive to the contribution of linearly polarized gluons. For this reason, future measurements of the azimuthal distributions in charm and bottom production at the proposed EIC and LHeC colliders seem to be very promising for determination of the linear polarization of gluons inside unpolarized proton.

    hep-phPLB(2018)·20 citations
  16. 16*

    Absence of pi^2 terms in physical anomalous dimensions in DIS: verification and resulting predictions

    J. Davies (1)🇩🇪 · A. Vogt (2) ((1) KIT, Karlsruhe, TTP, (2) Liverpool U., Dept. Math.)🇬🇧

    We study the higher-order corrections to structure functions in inclusive deep-inelastic scattering (DIS) in massless perturbative QCD, in the context of the conjectured absence of even-n values of the Riemann zeta-function zeta_n, i.e., of powers of pi^2, in Euclidean physical quantities. We provide substantial additional support for this conjecture by demonstrating that it holds, as far as it can be tested by the results of diagram computations, for the physical anomalous dimensions of structure functions at the fourth and fifth order in the strong coupling constant alpha_s. The conjecture is then employed to predict hitherto unknown zeta_4 and zeta_6 contributions to the anomalous dimensions for parton distributions and to the coefficient functions for the longitudinal structure function F_L.

    hep-phPLB(2018)·40 citations
  17. 17*

    Low-Energy Effective Field Theory below the Electroweak Scale: Anomalous Dimensions

    Elizabeth E. Jenkins🇺🇸 · Aneesh V. Manohar🇺🇸 · Peter Stoffer🇺🇸

    We compute the one-loop anomalous dimensions of the low-energy effective Lagrangian below the electroweak scale, up to terms of dimension six. The theory has 70 dimension-five and 3631 dimension-six Hermitian operators that preserve baryon and lepton number, as well as additional operators that violate baryon number and lepton number. The renormalization group equations for the quark and lepton masses and the QCD and QED gauge couplings are modified by dimension-five and dimension-six operator contributions. We compute the renormalization group equations from one insertion of dimension-five and dimension-six operators, as well as two insertions of dimension-five operators, to all terms of dimension less than or equal to six. The use of the equations of motion to eliminate operators can be ambiguous, and we show how to resolve this ambiguity by a careful use of field redefinitions.

    hep-phJHEP(2018)·305 citations
  18. 18*

    Constraining heavy dark matter with cosmic-ray antiprotons

    Alessandro Cuoco🇩🇪 · Jan Heisig🇩🇪 · Michael Korsmeier🇩🇪 · Michael Krämer🇩🇪

    Cosmic-ray observations provide a powerful probe of dark matter annihilation in the Galaxy. In this paper we derive constraints on heavy dark matter from the recent precise AMS-02 antiproton data. We consider all possible annihilation channels into pairs of standard model particles. Furthermore, we interpret our results in the context of minimal dark matter, including higgsino, wino and quintuplet dark matter. We compare the cosmic-ray antiproton limits to limits from -ray observations of dwarf spheroidal galaxies and to limits from -ray and -line observations towards the Galactic center. While the latter limits are highly dependent on the dark matter density distribution and only exclude a thermal wino for cuspy profiles, the cosmic-ray limits are more robust, strongly disfavoring the thermal wino dark matter scenario even for a conservative estimate of systematic uncertainties.

    hep-phastro-ph.HEJCAP(2018)·109 citations
  19. 19*

    BPS Cho-Maison monopole

    Filip Blaschke🇨🇿 · Petr Beneš🇨🇿

    We present exact solutions to Cho-Maison magnetic monopole in a family of effective electroweak models that have a Bogomol'nyi-Prasad-Sommerfield (BPS) limit. We find that the lower bound to the mass of the magnetic monopole is . We argue that this bound holds universally, not just in theories with a BPS limit.

    ↳ hep-thhep-phPTEP(2018)·22 citations
  20. 20*

    Hadronic vacuum polarization contribution to the anomalous magnetic moments of leptons from first principles

    Budapest-Marseille-Wuppertal collaboration: Sz. Borsanyi🇩🇪 · Z. Fodor🇩🇪 · C. Hoelbling🇩🇪 · T. Kawanai🇩🇪 · S. Krieg🇩🇪 · L. Lellouch🇫🇷 · R. Malak🇫🇷 · K. Miura🇫🇷 · K. K. Szabo🇩🇪 · C. Torrero🇫🇷 · B. C. Toth🇩🇪

    We compute the leading, strong-interaction contribution to the anomalous magnetic moment of the electron, muon and tau using lattice quantum chromodynamics (QCD) simulations. Calculations include the effects of , , and quarks and are performed directly at the physical values of the quark masses and in volumes of linear extent larger than . All connected and disconnected Wick contractions are calculated. Continuum limits are carried out using six lattice spacings. We obtain , and , where the first error is statistical and the second is systematic.

    ↳ hep-lathep-phPRL(2018)·264 citations
  21. 21*

    Dark energy from quantum gravity discreteness

    Alejandro Perez🇫🇷 · Daniel Sudarsky🇲🇽

    We argue that discreteness at the Planck scale (naturally expected to arise from quantum gravity) might manifest in the form of minute violations of energy-momentum conservation of the matter degrees of freedom when described in terms of (idealized) smooth fields on a smooth spacetime. In the context of applications to cosmology such `energy diffusion' from the low energy matter degrees of freedom to the discrete structures underlying spacetime leads to the emergence of an effective dark energy term in Einstein's equations. We estimate this effect using a (relational) hypothesis about the materialization of discreteness in quantum gravity which is motivated by the strict observational constraints supporting the validity of Lorentz invariance at low energies. The predictions coming from simple dimensional analysis yield a cosmological constant of the order of magnitude of the observed value without fine tuning.

    ↳ gr-qcastro-ph.COhep-phhep-thPRL(2019)·73 citations
  22. 22*

    Photon-photon scattering and related phenomena. Experimental and theoretical approaches: The early period

    K. Scharnhorst (Vrije Universiteit Amsterdam)🇳🇱

    We review the literature on possible violations of the superposition principle for electromagnetic fields in vacuum from the earliest studies until the emergence of renormalized QED at the end of the 1940's. The exposition covers experimental work on photon-photon scattering and the propagation of light in external electromagnetic fields and relevant theoretical work on nonlinear electrodynamic theories (Born-Infeld theory and QED) until the year 1949. To enrich the picture, pieces of reminiscences from a number of (theoretical) physicists on their work in this field are collected and included or appended.

    ↳ physics.hist-phhep-phhep-th27 citations
  23. 23*

    Effect of the QCD equation of state and strange hadronic resonances on multiparticle correlations in heavy ion collisions

    Paolo Alba🇩🇪 · Valentina Mantovani Sarti🇩🇪 · Jorge Noronha🇧🇷 · Jacquelyn Noronha-Hostler🇺🇸 · Paolo Parotto🇺🇸 · Israel Portillo Vazquez🇺🇸 · Claudia Ratti🇺🇸

    The QCD equation of state at zero baryon chemical potential is the only element of the standard dynamical framework to describe heavy ion collisions that can be directly determined from first principles. Continuum extrapolated lattice QCD equations of state have been computed using 2+1 quark flavors (up/down and strange) as well as 2+1+1 flavors to investigate the effect of thermalized charm quarks on QCD thermodynamics. Lattice results have also indicated the presence of new strange resonances that not only contribute to the equation of state of QCD matter but also affect hadronic afterburners used to model the later stages of heavy ion collisions. We investigate how these new developments obtained from first principles calculations affect multiparticle correlations in heavy ion collisions. We compare the commonly used equation of state S95n-v1, which was constructed using what are now considered outdated lattice results and hadron states, to the current state-of-the-art lattice QCD equations of state with 2+1 and 2+1+1 flavors coupled to the most up-to-date hadronic resonances and their decays. New hadronic resonances lead to an enhancement in the hadronic spectra at intermediate . Using an outdated equation of state can directly affect the extraction of the shear viscosity to entropy density ratio, , of the quark-gluon plasma and results for different flow observables. The effects of the QCD equation of state on multiparticle correlations of identified particles are determined for both AuAu GeV and PbPb TeV collisions. New insights into the to puzzle in ultracentral collisions are found. Flow observables of heavier particles exhibit more non-linear behavior regardless of the assumptions about the equation of state, which may provide a new way to constrain the temperature dependence of .

    ↳ nucl-thhep-lathep-phnucl-exPRC(2018)·117 citations
  24. 24*

    Evidence of Neutrino Enhanced Clustering in a Complete Sample of Sloan Survey Clusters, Implying eV

    Razieh Emami🇨🇳 · Tom Broadhurst🇪🇸 · Pablo Jimeno🇪🇸 · George Smoot🇨🇳 · Raul Angulo🇪🇸 · Jeremy Lim🇨🇳 · Ming Chung Chu🇨🇳 · Shek Yeung · Zhichao Zeng · Ruth Lazkoz🇪🇸

    The clustering amplitude of 7143 clusters from the Sloan Digital Sky Survey (SDSS) is found to increase with cluster mass, closely agreeing with the Gaussian random field hypothesis for structure formation. The amplitude of the observed cluster correlation exceeds the predictions from pure cold dark matter (CDM) simulation by for the standard Planck-based values of the cosmological parameters. We show that this excess can be naturally accounted for by free streaming of light neutrinos, which opposes gravitational growth, so clusters formed at fixed mass are fewer and hence more biased than for a pure CDM density field. An enhancement of the cluster bias by 7\% matches the observations, corresponding to a total neutrino mass, eV at 67\% confidence level, for the standard relic neutrino density. If ongoing laboratory experiments favor a normal neutrino mass hierarchy then we may infer a somewhat larger total mass than the minimum oscillation based value, , with 90\% confidence. Much higher precision can be achieved by applying our method to a larger sample of more distant clusters with weak lensing derived masses.

    ↳ astro-ph.COastro-ph.GAastro-ph.HEhep-ph+118 citations
  25. 25*

    Search for Boosted Dark Matter Interacting With Electrons in Super-Kamiokande

    Super-Kamiokande Collaboration: C. Kachulis · K. Abe · C. Bronner · Y. Hayato · M. Ikeda · K. Iyogi · J. Kameda · Y. Kato · Y. Kishimoto · Ll. Marti · M. Miura · S. Moriyama and 146 other authors

    A search for boosted dark matter using 161.9 kiloton-years of Super-Kamiokande IV data is presented. We search for an excess of elastically scattered electrons above the atmospheric neutrino background, with a visible energy between 100 MeV and 1 TeV, pointing back to the Galactic Center or the Sun. No such excess is observed. Limits on boosted dark matter event rates in multiple angular cones around the Galactic Center and Sun are calculated. Limits are also calculated for a baseline model of boosted dark matter produced from cold dark matter annihilation or decay.

    ↳ hep-exhep-phPRL(2018)·89 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.