PaperPanorama

HEP Phenomenology·hep-ph

Fri·Nov 10, 2017

29 papers—14 primary·15 cross-listed·reconstructed*

  1. 01*

    Searching for Secluded Dark Matter with H.E.S.S., Fermi-LAT, and Planck

    Stefano Profumo🇺🇸 · Farinaldo S. Queiroz🇧🇷 · Joseph Silk🇫🇷 · Clarissa Siqueira🇧🇷

    Short-lived mediators are often used to describe dark matter interactions with Standard Model particles. When the dark matter mass is heavier than the mass of the mediator, it may self-annihilate into short-lived mediators, and in some cases this might be the dominant annihilation channel. This scenario is known as secluded dark matter. We use Fermi-LAT observations of dwarf spheroidal galaxies, H.E.S.S. data from the Galactic center, and Planck measurements of the Cosmic Microwave Background to constrain secluded dark matter. We explore the interplay between these experiments and we assess the impact of the mediator mass on our bounds, an often overlooked yet very important point. In particular, we exclude pair -annihilation cross-sections greater or on the order of for dark matter masses around ~GeV and greater or on the order of for dark matter masses around a TeV. Our findings supersede previous constraints which use Fermi-LAT data, and constitute the first limits on secluded dark sectors using the H.E.S.S. telescope. We also show that one can fit TeV gamma-ray observations from H.E.S.S. with secluded dark matter annihilations, with the mediator mass impacting the best-fit dark matter particle mass. Our findings indicate that any assessment of secluded dark sectors in the context of indirect detection significantly depends on the choice of the mediator mass.

    hep-phastro-ph.HEhep-exJCAP(2018)·84 citations
  2. 02*

    Accessing Masses Beyond Collider Reach - in EFT

    Florian Goertz🇩🇪

    We demonstrate how masses of new states, beyond direct experimental reach, could nevertheless be extracted in the framework of effective field theory (EFT), given broad assumptions on the underlying UV physics, however not sticking to a particular setup nor fixing the coupling strength of the scenario. The flat direction in the vs. plane is lifted by studying correlations between observables that depend on operators with a different scaling. We discuss the remaining model dependence (which is inherent even in the EFT approach to have control over the error due to the truncation of the power series), as well as prospects to test paradigms of UV physics. In particular, we provide an assessment of which correlations are best suited regarding sensitivity, give an overview of possible/expected effects in different observables, and demonstrate how perturbativity and direct search limits corner possible patterns of deviations from the SM in a given UV paradigm.

    hep-phhep-exJHEP(2019)·3 citations
  3. 03*

    Another Formula for the Charged Lepton Masses

    Yoshio Koide🇯🇵

    A charged lepton mass formula is well-known. Since we can, in general, have two relations for three quantities, we may also expect another relation for the charged lepton masses. Then, the relation will be expressed by a form of . According to this conjecture, a scalar potential model is speculated.

    hep-phPLB(2018)·3 citations
  4. 05*

    Parton Shower and NLO-Matching uncertainties in Higgs Boson Pair Production

    Stephen Jones🇩🇪 · Silvan Kuttimalai🇺🇸

    We perform a detailed study of NLO parton shower matching uncertainties in Higgs boson pair production through gluon fusion at the LHC based on a generic and process independent implementation of NLO subtraction and parton shower matching schemes for loop-induced processes in the Sherpa event generator. We take into account the full top-quark mass dependence in the two-loop virtual corrections and compare the results to an effective theory approximation. In the full calculation, our findings suggest large parton shower matching uncertainties that are absent in the effective theory approximation. We observe large uncertainties even in regions of phase space where fixed-order calculations are theoretically well motivated and parton shower effects expected to be small. We compare our results to NLO matched parton shower simulations and analytic resummation results that are available in the literature.

    hep-phJHEP(2018)·84 citations
  5. 06*

    Heavy-flavor parton distributions without heavy-flavor matching prescriptions

    Valerio Bertone🇳🇱 · Alexandre Glazov🇩🇪 · Alexander Mitov🇬🇧 · Andrew Papanastasiou🇬🇧 · Maria Ubiali🇬🇧

    We show that the well-known obstacle for working with the zero-mass variable flavor number scheme, namely, the omission of O(1) mass power corrections close to the conventional heavy flavor matching point (HFMP) mu_b=m, can be easily overcome. For this it is sufficient to take advantage of the freedom in choosing the position of the HFMP. We demonstrate that by choosing a sufficiently large HFMP, which could be as large as 10 times the mass of the heavy quark, one can achieve the following improvements: 1) above the HFMP the size of missing power corrections O(m) is restricted by the value of mu_b and, therefore, the error associated with their omission can be made negligible; 2) additional prescriptions for the definition of cross-sections are not required; 3) the resummation accuracy is maintained and 4) contrary to the common lore we find that the discontinuity of alpha_s and pdfs across thresholds leads to improved continuity in predictions for observables. We have considered a large set of proton-proton and electron-proton collider processes, many through NNLO QCD, that demonstrate the broad applicability of our proposal.

    hep-phhep-exJHEP(2018)·24 citations
  6. 07*

    Partonic quasi-distributions of the proton and pion from transverse-momentum distributions

    Wojciech Broniowski🇵🇱 · Enrique Ruiz Arriola🇪🇸

    The parton quasi-distribution functions (QDFs) of Ji have been found by Radyushkin to be directly related to the transverse momentum distributions (TMDs), to the pseudo-distributions, and to the Ioffe-time distributions (ITDs). This makes the QDF results at finite longitudinal momentum of the hadron interesting in their own right. Moreover, the QDF-TMD relation provides a gateway to the pertinent QCD evolution, with respect to the resolution scale Q, for the QDFs. Using the Kwieciński evolution equations and well established parameterizations at a low initial scale, we analyze the QCD evolution of quark and gluon QDF components of the proton and the pion. We discuss the resulting breaking of the longitudinal-transverse factorization and show that it has little impact on QDFs at the relatively low scales presently accessible on the lattice, but the effect is visible in reduced ITDs at sufficiently large values of the Ioffe time. Sum rules involving derivatives of ITDs and moments of the parton distribution functions (PDFs) are applied to the ETMC lattice data. This allows us for a lattice determination of the transverse-momentum width of the TMDs from QDF studies.

    hep-phhep-latPRD(2018)·42 citations
  7. 08*

    Nonequilibrium quark production in the expanding QCD plasma

    Naoto Tanji🇮🇹 · Juergen Berges🇩🇪

    We perform real-time lattice simulations of nonequilibrium quark production in the longitudinally expanding QCD plasma. Starting from a highly occupied gluonic state with vacuum quark sector, we extract the time evolution of quark and gluon number densities per unit transverse area and rapidity. The total quark number shows after an initial rapid increase an almost linear growth with time. Remarkably, this growth rate appears to be consistent with a simple kinetic theory estimate involving only two-to-two scattering processes in small-angle approximation. This extends previous findings about the role of two-to-two scatterings for purely gluonic dynamics in accordance with the early stages of the bottom-up thermalization scenario.

    hep-phhep-latnucl-thPRD(2018)·24 citations
  8. 09*

    Momentum conservation and unitarity in parton showers and NLL resummation

    Stefan Hoeche🇺🇸 · Daniel Reichelt🇩🇪 · Frank Siegert🇩🇪

    We present a systematic study of differences between NLL resummation and parton showers. We first construct a Markovian Monte-Carlo algorithm for resummation of additive observables in electron-positron annihilation. Approximations intrinsic to the pure NLL result are then removed, in order to obtain a traditional, momentum and probability conserving parton shower based on the coherent branching formalism. The impact of each approximation is studied, and an overall comparison is made between the parton shower and pure NLL resummation. Differences compared to modern parton-shower algorithms formulated in terms of color dipoles are analyzed.

    hep-phJHEP(2018)·53 citations
  9. 10*

    Ameliorating the popular lepton mixings with A4 symmetry: A see-saw model for realistic neutrino masses and mixing

    Soumita Pramanick (HRI, Allahabad)🇮🇳

    A model for neutrino masses and mixing is devised appointing the see-saw mechanism. The proffered model is fabricated with a combination of Type -I and Type-II see-saw contributions of which the latter dominates. The scalars and the leptons in the model are assigned charges conducive to obtain the mass matrices viable for the scheme. The Type -II see-saw mass matrix accommodates atmospheric mass splitting and maximal mixing in the atmospheric sector (). It is characterized by vanishing solar mass splitting and whereas the third neutrino mixing angle is free to acquire any value of . Particular alternatives of corresponding to the popular lepton mixings viz. (tribimaximal), (bimaximal), (golden ratio) are accounted for. Another choice of (no solar mixing) is reckoned. The subdominant Type-I see-saw constituent of the model propels all the neutrino oscillation parameters into the ranges allowed by the data which in its turn get interrelated owing to their common origin. This makes the model testable in the light of future experimental data. As an example, emerges in the first (second) octant for normal (inverted) ordering. CP-violation is governed by phases present in the right-handed Majorana neutrino mass matrix, . Only normal ordering is allowed if these phases are absent. If is complex the Dirac CP-violating phase , is capable of being large, i.e., , and inverted ordering of neutrino masses is also permitted. T2K and NOVA preliminary data favouring normal ordering and predicts lightest neutrino mass to be 0.05 eV or more within the framework of this model.

    hep-phhep-exPRD(2018)·8 citations
  10. 11*

    Accelerator and reactor complementarity in coherent neutrino scattering

    James B. Dent🇺🇸 · Bhaskar Dutta🇺🇸 · Shu Liao🇺🇸 · Jayden L. Newstead🇺🇸 · Louis E. Strigari🇺🇸 · Joel W. Walker🇺🇸

    We study the complementarity between accelerator and reactor coherent elastic neutrino-nucleus elastic scattering (CENS) experiments for constraining new physics in the form of non-standard neutrino interactions (NSI). Firstly, considering just data from the recent observation by the COHERENT experiment, we explore interpretive degeneracies that emerge when activating either two or four unknown NSI parameters. Next, we demonstrate that simultaneous treatment of reactor and accelerator experiments, each employing at least two distinct target materials, can break a degeneracy between up and down flavor-diagonal NSI terms that survives analysis of neutrino oscillation experiments. Considering four flavor-diagonal () up and down-type NSI parameters, we find that all terms can be measured with high local precision (to a width as small as 5\% in Fermi units) by next-generation experiments, although discrete reflection ambiguities persist.

    hep-phhep-exPRD(2018)·62 citations
  11. 12*

    Heavy charged scalars from fusion: A generic search strategy applied to a 3HDM with family symmetry

    José Eliel Camargo-Molina🇸🇪 · Tanumoy Mandal🇸🇪 · Roman Pasechnik🇸🇪 · Jonas Wessén🇸🇪

    We describe a class of three Higgs doublet models (3HDMs) with a softly broken family symmetry that enforces a Cabibbo-like quark mixing while forbidding tree-level flavour changing neutral currents. The hierarchy in the observed quark masses is partly explained by a softer hierarchy in the vacuum expectation values of the three Higgs doublets. As a consequence, the physical scalar spectrum contains a Standard Model (SM) like Higgs boson while exotic scalars couple the strongest to the second quark family, leading to rather unconventional discovery channels that could be probed at the Large Hadron Collider. In particular, we describe a search strategy for the lightest charged Higgs boson , through the process , using a multivariate analysis that leads to an excellent discriminatory power against the SM background. Although the analysis is applied to the proposed class of 3HDMs, we employ a model-independent formulation such that it can be applied to any other model with the same discovery channel.

    hep-phJHEP(2018)·14 citations
  12. 13*

    Higgs Enhancement for the Dark Matter Relic Density

    Julia Harz🇫🇷 · Kalliopi Petraki🇫🇷

    We consider the long-range effect of the Higgs on the density of thermal-relic dark matter. While the electroweak gauge boson and gluon exchange have been previously studied, the Higgs is typically thought to mediate only contact interactions. We show that the Sommerfeld enhancement due to a 125 GeV Higgs can deplete TeV-scale dark matter significantly, and describe how the interplay between the Higgs and other mediators influences this effect. We discuss the importance of the Higgs enhancement in the Minimal Supersymmetric Standard Model, and its implications for experiments.

    hep-phPRD(2018)·42 citations
  13. 14*

    Neutrino CP violation and sign of baryon asymmetry in the minimal seesaw model

    Yusuke Shimizu🇯🇵 · Kenta Takagi🇯🇵 · Morimitsu Tanimoto🇯🇵

    We discuss the correlation between the CP violating Dirac phase of the lepton mixing matrix and the cosmological baryon asymmetry based on the leptogenesis in the minimal seesaw model with two right-handed Majorana neutrinos and the trimaximal mixing for neutrino flavors. The sign of the CP violating Dirac phase at low energy is fixed by the observed cosmological baryon asymmetry since there is only one phase parameter in the model. According to the recent T2K and NOA data of the CP violation, the Dirac neutrino mass matrix of our model is fixed only for the normal hierarchy of neutrino masses.

    hep-phPLB(2018)·25 citations
  14. 15*

    Structure of the nucleon's low-lying excitations

    Chen Chen🇧🇷 · Bruno El-Bennich🇧🇷 · Craig D. Roberts🇺🇸 · Sebastian M. Schmidt🇩🇪 · Jorge Segovia🇪🇸 · Shaolong Wan🇨🇳

    A continuum approach to the three valence-quark bound-state problem in quantum field theory is used to perform a comparative study of the four lightest baryon isospin-doublets in order to elucidate their structural similarities and differences. Such analyses predict the presence of nonpointlike, electromagnetically-active quark-quark (diquark) correlations within all baryons; and in these doublets, isoscalar-scalar, isovector-pseudovector, isoscalar-pseudoscalar, and vector diquarks can all play a role. In the two lightest doublets, however, scalar and pseudovector diquarks are overwhelmingly dominant. The associated rest-frame wave functions are largely -wave in nature; and the first excited state in this channel has the appearance of a radial excitation of the ground state. The two lightest doublets fit a different picture: accurate estimates of their masses are obtained by retaining only pseudovector diquarks; in their rest frames, the amplitudes describing their dressed-quark cores contain roughly equal fractions of even- and odd-parity diquarks; and the associated wave functions are predominantly -wave in nature, but possess measurable -wave components. Moreover, the first excited state in each negative-parity channel has little of the appearance of a radial excitation. In quantum field theory, all differences between positive- and negative-parity channels must owe to chiral symmetry breaking, which is overwhelmingly dynamical in the light-quark sector. Consequently, experiments that can validate the contrasts drawn herein between the structure of the four lightest doublets will prove valuable in testing links between emergent mass generation and observable phenomena and, plausibly, thereby revealing dynamical features of confinement.

    ↳ nucl-thhep-lathep-phnucl-exPRD(2018)·69 citations
  15. 16*

    -matrix Approach to Quark-Gluon Plasma

    Shuai Y.F. Liu🇺🇸 · Ralf Rapp🇺🇸

    A selfconsistent thermodynamic -matrix approach is deployed to study the microscopic properties of the quark-gluon plasma (QGP), encompassing both light- and heavy-parton degrees of freedom in a unified framework. The starting point is a relativistic effective Hamiltonian with a universal color force. The input in-medium potential is quantitatively constrained by computing the heavy-quark (HQ) free energy from the static -matrix and fitting it to pertinent lattice-QCD (lQCD) data. The corresponding -matrix is then applied to compute the equation of state (EoS) of the QGP in a two-particle irreducible formalism including the full off-shell properties of the selfconsistent single-parton spectral functions and their two-body interaction. In particular, the skeleton diagram functional is fully resummed to account for emerging bound and scattering states as the critical temperature is approached from above. We find that the solution satisfying three sets of lQCD data (EoS, HQ free energy and quarkonium correlator ratios) is not unique. As limiting cases we discuss a weakly-coupled solution (WCS) which features color-potentials close to the free energy, relatively sharp quasiparticle spectral functions and weak hadronic resonances near , and a strongly-coupled solution (SCS) with a strong color potential (much larger than the free energy) resulting in broad non-quasiparticle parton spectral functions and strong hadronic resonance states which dominate the EoS when approaching .

    ↳ nucl-thcond-mat.quant-gashep-lathep-ph+1PRC(2018)·94 citations
  16. 17*

    Recent COMPASS results on Transverse Spin Asymmetries in SIDIS

    Franco Bradamante (on behalf of the COMPASS Collaboration)🇮🇹

    After reviewing the most important COMPASS results on transverse spin effects in SIDIS, I will present the recent work we have done on weighted Sivers asymmetries and "transversity induced" polarisation. Using the high statistics data collected in 2010 on a transversely polarised proton target COMPASS has evaluated the transverse momentum weighted Sivers asymmetries both in - and in -bins. The results are also compared with the standard unweighted asymmetries. Using the whole data sample collected over the years on transversely polarised deuteron and proton targets COMPASS has measured the transversity induced polarisation in the reaction . Possible future SIDIS COMPASS measurements will also be briefly mentioned.

    ↳ hep-exhep-phJ.Phys.Conf.Ser.(2017)·5 citations
  17. 18*

    Longitudinal decorrelation measures of flow magnitude and event-plane angles in ultra-relativistic nuclear collisions

    Piotr Bozek🇵🇱 · Wojciech Broniowski🇵🇱

    We discuss the forward-backward correlations of harmonic flow in Pb+Pb collisions at the CERN Large Hadron Collider (LHC), applying standard multibin measures, as well as proposed here new measures. We illustrate the methods with hydrodynamic model simulations based on event-by-event initial conditions from the wounded quark model with asymmetric rapidity emission profiles. Within the model we examine independently the event-plane angle and the flow magnitude decorrelations. We find specific hierarchy between various flow decorrelation measures and confirm certain factorization relations. We find qualitative agreement of the model and the data from the ATLAS and CMS Collaborations.

    ↳ nucl-thhep-phnucl-exPRC(2018)·57 citations
  18. 19*

    Recent results of search for solar axions using resonant absorption by Kr nuclei

    A.V. Derbin🇷🇺 · I.S. Drachnev🇷🇺 · A.M. Gangapshev🇷🇺 · Yu.M. Gavrilyuk🇷🇺 · V.V. Kazalov🇷🇺 · V.V.Kobychev · V.V. Kuzminov🇷🇺 · V.N. Muratova🇷🇺 · S.I. Panasenko · S.S. Ratkevich🇺🇦 · D.A. Tekueva🇷🇺 · E.V. Unzhakov🇷🇺 · S.P. Yakimenko🇷🇺

    A search for resonant absorption of the solar axion by nuclei was performed using the proportional counter installed inside the low-background setup at the Baksan Neutrino Observatory. The obtained model independent upper limit on the combination of isoscalar and isovector axion-nucleon couplings allowed us to set the new upper limit on the hadronic axion mass of eV (95\% C.L.) with the generally accepted values =0.5 and =0.56.

    ↳ hep-exhep-phnucl-exJ.Phys.Conf.Ser.(2017)·3 citations
  19. 20*

    Dark Energy in the Laboratory

    Philippe Brax🇫🇷 · Patrick Valageas🇫🇷 · Pierre Vanhove🇫🇷

    We analyse the role, on large cosmological scales and laboratory experiments, of the leading curvature squared contributions to the low energy effective action of gravity. We argue for a natural relationship at low-energy between the coefficients of the Ricci scalar squared term in this expansion and the dark energy scale in four dimensional Planck mass units. We show how the compatibility between the acceleration of the expansion rate of the Universe, local tests of gravity and the quantum stability of the model all converge to select such a relationship up to a coefficient which should be determined experimentally. When embedding this low energy theory of gravity into candidates for its ultraviolet completion, we find that the proposed relationship is guaranteed in string-inspired supergravity models with modulus stabilisation and supersymmetry breaking leading to de Sitter compactifications. In this case, the scalar degree of freedom of gravity is associated to a volume modulus. Once written in terms of a scalar-tensor theory, the effective theory corresponds to a massive scalar field coupled with the universal strength to the matter stress-energy tensor. When the relationship is realised we find that on astrophysical scales and in cosmology the scalar field is ultralocal and therefore no effect arises on such large scales. On the other hand, the scalar field mass is tightly constrained by the non-observation of fifth forces in torsion pendulum experiments such as Eöt-Wash. It turns out that the observation of the dark energy scale in cosmology implies that the scalar field could be detectable by fifth force experiments in the near future.

    ↳ astro-ph.COgr-qchep-phhep-thPRD(2018)·8 citations
  20. 21*

    More on heavy tetraquarks in lattice QCD at almost physical pion mass

    Anthony Francis🇨🇦 · Renwick J. Hudspith🇨🇦 · Randy Lewis🇨🇦 · Kim Maltman🇨🇦

    We report on our progress in studying exotic, heavy tetraquark states, . Using publicly available dynamical Wilson-Clover gauge configurations, generated by the PACS-CS collaboration, with pion masses 164, 299 and 415 MeV, we extend our previous analysis to heavy quark components containing heavier than physical bottom quarks or , charm and bottom quarks and also only charm quarks . Throughout we employ NRQCD and relativistic heavy quarks for the heavier than bottom, bottom and charm quarks. Using our previously established diquark-antidiquark and meson-meson operator basis we comment in particular on the dependence of the binding energy on the mass of the heavy quark component , with heavy quarks ranging from . In the heavy flavor non-degenerate case, , and especially for the tetraquark channel , we extend our work to utilize a GEVP to study the ground and threshold states thereby enabling a clear identification of possible binding. Finally, we present initial work on the system where a much larger operator basis is available in comparison to flavor combinations with NRQCD quarks.

    ↳ hep-lathep-phnucl-thEPJ Web Conf.(2018)·10 citations
  21. 22*

    Relativistic compact stars with charged anisotropic matter

    S. K. Maurya (Nizwa U.) · Ayan Banerjee (Jadavpur U.)🇿🇦 · Phongpichit Channuie (Walailak U.)🇹🇭

    In this article we perform a detailed theoretical analysis for a class of new exact solutions with anisotropic fluid distribution of matter for compact objects in hydrostatic equilibrium. To achieve this we call the relation between the metric functions, namely, embedding class one condition. The investigation is carried out by generalising the properties of a spherical star with an emphasis on hydrostatic equilibrium equation, i.e., the generalised Tolman-Oppenheimer-Volkoff equation, in our understanding of these compact objects. We match the interior solution to an exterior Reissner-Nordstrom solution, and study some physical features of this models, such as the energy conditions, speeds of sound, and mass - radius relation of the star. We also show that obtained solution is compatible with observational data for compact object Her X-1.

    ↳ gr-qcastro-ph.COhep-phCPC(2018)·33 citations
  22. 23*

    Reconstruction of the HII Galaxy Hubble Diagram using Gaussian Processes

    Manoj K. Yennapureddy🇺🇸 · Fulvio Melia🇺🇸

    The Hubble diagram constructed using HII galaxies (HIIGx) and Giant extragalactic HII regions (GEHR) as standard candles already extends beyond the current reach of Type Ia SNe. A sample of 156 HIIGx and GEHR sources has been used previously to compare the predictions of LCDM and R_h=ct, the results of which suggested that the HIIGx and GEHR sources strongly favour the latter over the former. But this analysis was based on the application of parametric fits to the data and the use of information criteria, which disfavour the less parsimonious models. In this paper, we advance the use of HII sources as standard candles by utilizing Gaussian processes (GP) to reconstruct the distance modulus representing these data without the need to pre-assume any particular model, none of which may in the end actually be the correct cosmology. In addition, this approach tightly constrains the 1 sigma confidence region of the reconstructed function, thus providing a better tool with which to differentiate between competing cosmologies. With this approach, we show that the Planck concordance model is in tension with the HII data at more than 2.5 sigma, while R_h=ct agrees with the GP reconstruction very well, particularly at redshifts > 10^{-3}.

    ↳ astro-ph.COastro-ph.GAhep-phJCAP(2017)·41 citations
  23. 24*

    Dark matter self-interactions from the internal dynamics of dwarf spheroidals

    Mauro Valli🇮🇹 · Hai-Bo Yu🇺🇸

    Dwarf spheroidal galaxies provide well-known challenges to the standard cold and collisionless dark matter scenario: The too-big-to-fail problem, namely the mismatch between the observed mass enclosed within the half-light radius of dwarf spheroidals and cold dark matter N-body predictions; The hints for inner constant-density cores. While these controversies may be alleviated by baryonic physics and environmental effects, revisiting the standard lore of cold and collisionless dark matter remains an intriguing possibility. Self-interacting dark matter may be the successful proposal to such a small-scale crisis. Self-interactions correlate dark matter and baryon distributions, allowing for constant-density cores in low surface brightness galaxies. Here we report the first data-driven study of the too-big-to-fail of Milky Way dwarf spheroidals within the self-interacting dark matter paradigm. We find good description of stellar kinematics and compatibility with the concentration-mass relation from recent pure cold dark matter simulations. Within this concentration-mass relation, a subset of Milky Way dwarfs are well fitted by cross sections of 0.5-3 cm/g, while others point to values greater than 10 cm/g.

    ↳ astro-ph.GAastro-ph.COhep-phNature Astron.(2018)·93 citations
  24. 25*

    Short-distance Schwinger-mechanism and chiral symmetry

    David A. McGady🇩🇰 · Jon Brogård🇩🇰

    In this paper, we study Schwinger pair production of charged massless particles in constant electric fields of finite-extent. Exploiting a map from the Dirac and Klein-Gordon equation to the harmonic oscillator, we find exact pair production rates for massless fermions and scalars. Pair production rates depend only on the ratio between the capacitor plate separation, , and the length-scale of the force-field, . Chirality ensures that fermion production smoothly vanishes with . Scalar pair production though diverges exponentially quickly in this limit. The same limit of the smooth tanh-potential does not diverge; divergences seem tied to singularities in current and charge densities.

    ↳ hep-thcond-mat.str-elhep-ph1 citation
  25. 26*

    Stellar Wakes from Dark Matter Subhalos

    Malte Buschmann🇺🇸 · Joachim Kopp🇩🇪 · Benjamin R. Safdi🇺🇸 · Chih-Liang Wu🇺🇸

    We propose a novel method utilizing stellar kinematic data to detect low-mass substructure in the Milky Way's dark matter halo. By probing characteristic wakes that a passing dark matter subhalo leaves in the phase space distribution of ambient halo stars, we estimate sensitivities down to subhalo masses or below. The detection of such subhalos would have implications for dark-matter and cosmological models that predict modifications to the halo-mass function at low halo masses. We develop an analytic formalism for describing the perturbed stellar phase-space distributions, and we demonstrate through simulations the ability to detect subhalos using the phase-space model and a likelihood framework. Our method complements existing methods for low-mass subhalo searches, such as searches for gaps in stellar streams, in that we can localize the positions and velocities of the subhalos today.

    ↳ astro-ph.GAhep-phPRL(2018)·47 citations
  26. 27*

    Anisotropic-hydrodynamics approach to a quark-gluon fluid mixture

    Wojciech Florkowski🇵🇱 · Ewa Maksymiuk🇵🇱 · Radoslaw Ryblewski🇵🇱

    Anisotropic-hydrodynamics framework is used to describe a mixture of quark and gluon fluids. The effects of quantum statistics, finite quark mass, and finite baryon number density are taken into account. The results of anisotropic hydrodynamics are compared with exact solutions of the coupled kinetic equations for quarks and gluons in the relaxation time approximation. The overall very good agreement between the hydrodynamic and kinetic-theory results is found.

    ↳ nucl-thhep-phPRC(2018)·21 citations
  27. 28*

    Confronting Kähler moduli inflation with CMB data

    Sukannya Bhattacharya🇮🇳 · Koushik Dutta🇮🇳 · Mayukh R. Gangopadhyay🇮🇳 · Anshuman Maharana🇮🇳

    In models of inflation obtained from string compactification, moduli vacuum misalignment leads to an epoch in the post-inflationary history of the universe when the energy density is dominated by cold moduli particles. This effect leads to a modification in the number of -foldings () between horizon exit of the CMB modes and the end of inflation. Taking Kähler moduli inflation as a prototype, the shift in -foldings turns out to be a function of the model parameters which also determines the inflationary observables. We analyse this scenario numerically using publicly available {\sc{ModeChord}} and {\sc{CosmoMC}} with the latest \emph{Planck+BICEP2/Keck array} data to constrain the model parameters and . In light of the present and future precision data, the results show the importance of careful consideration of any post-inflationary non-standard epoch, as well as of the effects of reheating.

    ↳ astro-ph.COhep-phPRD(2018)·16 citations
  28. 29*

    Latest Results on Top Quark Properties: Deciphering the DNA of the heaviest quark

    Michele Gallinaro (on behalf of the CMS collaboration)🇵🇹

    The top quark, the heaviest known elementary particle discovered at the Fermilab Tevatron more than twenty years ago, has taken a central role in the study of fundamental interactions. Due to its large mass, the top quark provides a unique environment for tests of the standard model. With a cumulative luminosity of more than 100~fb collected at TeV by each of the ATLAS and CMS experiments at the Large Hadron Collider in the first ten years of operation, top quark physics is probing uncharted territories in precision and rare measurements with sensitivity to New Physics processes. This document summarizes the latest experimental measurements and studies of top quark properties.

    ↳ hep-exhep-ph1 citation

* 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.