PaperPanorama

HEP Phenomenology·hep-ph

Wed·Feb 26, 2020

28 papers16 primary·12 cross-listed·reconstructed*

  1. 01*

    Revisiting cosmic ray antinuclei fluxes with a new coalescence model

    M. Kachelriess🇳🇴 · S. Ostapchenko🇩🇪 · J. Tjemsland🇳🇴

    Antideuteron and antihelium nuclei have been proposed as promising detection channels for dark matter because of the low astrophysical backgrounds expected. To estimate both potential exotic contributions and their backgrounds, one usually employs the coalescence model in momentum space. Here we use instead a newly developed coalescence model based on the Wigner function representations of the produced nuclei states. This approach includes both the process-dependent size of the formation region of antinuclei, and the momentum correlations of coalescing antinucleons in a semi-classical picture. The model contains a single universal parameter that we tune to experimental data on antideuteron production in electron-positron, proton-proton and proton-nucleus collisions. The obtained value fm agrees well with its physical interpretation as the size of the formation region of antinuclei in collisions of point-like particles. This model allows us therefore to calculate in a consistent frame-work the antideuteron and antihelium fluxes both from secondary production and from dark matter annihilations. We find that the antihelium-3 flux falls short by more than an order of magnitude of the detection sensitivity of the AMS-02 experiment, assuming standard cosmic ray propagation parameters, while the antideuteron flux can be comparable to the sensitivities of the AMS-02 and GAPS experiments.

    hep-phastro-ph.HEJCAP(2020)·48 citations
  2. 02*

    Nondecoupling in Multi-Higgs doublet models

    Francisco Faro🇵🇹 · Jorge C. Romao🇵🇹 · Joao P. Silva🇵🇹

    We consider models with any number of Higgs doublets and study the conditions for decoupling. We show that, under very general circumstances, all the quadratic coefficients of the scalar potential must be present, except in special cases, which include terms related to directions of vanishing vacuum expectation values. We give a few examples. Moreover, we show that the decoupling of all charged scalars implies the decoupling of all extra neutral scalars and vanishing violation in scalar-pseudoscalar mixing.

    hep-phEPJC(2020)·20 citations
  3. 03*

    Semileptonic decays of in dynamical approaches

    C.Q. Geng🇨🇳 · Chong-Chung Lih🇹🇼 · Chia-Wei Liu🇹🇼 · Tien-Hsueh Tsai🇹🇼

    We study the semileptonic decays of in two relativistic dynamical approaches of the light-front constituent quark model (LFCQM) and MIT bag model (MBM). By considering the Fermi statistic between quarks and determining spin-flavor structures in baryons along with the helicity formalism in the two different dynamical models, we calculate the branching ratios (s) and averaged asymmetry parameters (s) in the decays. Explicitly, we find that and in (LFCQM, MBM), in comparison with the data of and given by the Particle Data Group, respectively. We also predict that and in LFCQM with two different scenarios for the momentum distributions of quarks in the neutron, and and in MBM, which could be tested by the ongoing experiments at BESIII, LHCb and BELLEII.

    hep-phhep-exPRD(2020)·21 citations
  4. 04*

    Photoproduction of massive gauge bosons in , and collisions

    R. O. Coelho🇧🇷 · V. P. Goncalves🇧🇷

    In this letter we present, for the first time, the results for the photoproduction of massive gauge bosons in proton -- proton, proton -- Lead and Lead -- Lead collisions at the Large Hadron Collider (LHC), High -- Energy LHC (HE -- LHC) and Future Circular Collider (FCC). Predictions for the rapidity distributions and total cross sections are presented. We predict a large number of events in the rapidity range probed by the LHC detectors, which implies that this process can be used to probe the photoproduction of massive gauge bosons as well to perform the search of Beyond Standard Model physics.

    hep-phhep-exPLB(2020)·6 citations
  5. 07*

    Bilinear quark operators in the RI/SMOM scheme at three loops

    Bernd A. Kniehl🇩🇪 · Oleg L. Veretin🇩🇪

    We consider the renormalization of the matrix elements of the bilinear quark operators , , and at next-to-next-to-next-to-leading order in QCD perturbation theory at the symmetric subtraction point. This allows us to obtain conversion factors between the scheme and the regularization invariant symmetric momentum subtraction (RI/SMOM) scheme. The obtained results can be used to reduce the errors in determinations of quark masses from lattice QCD simulations. The results are given in Landau gauge.

    hep-phhep-latPLB(2020)·29 citations
  6. 08*

    Pentaquark states from bound state approach with chiral partner structure

    Ben-Teng Zhang🇨🇳 · Jun-Shuai Wang🇨🇳 · Yong-Liang Ma🇨🇳

    The observation of the two states and [Phys.Rev.Lett. 115 (2015) 072001] solids the existence of the pentaquark state in Nature. In this work, we study the spectrum of the pentaquark states including one or two heavy quarks based on the bound state approach by binding the heavy-light mesons to the nucleon as a soliton in an effective Lagrangian approach. By regarding the doublet and doublet as chiral partners to each other and coupling them to light mesons with a minimal derivative, the chiral partner structure of the pentaquark states is calculated. We find that the bound state approach prefers to arrange and into a heavy quark doublet so both decay to through the -wave. The predicted spectrum shown in this work serves as a guide for the experimental hunting of more pentaquark states.

    hep-phnucl-th5 citations
  7. 09*

    Updates and New Results in Models with Reduced Couplings

    Sven Heinemeyer🇪🇸 · Myriam Mondragón🇲🇽 · Gregory Patellis🇬🇷 · Nick Tracas🇬🇷 · George Zoupanos🇬🇷

    The idea of reduction of couplings consists in searching for renormalization group invariant relations between parameters of a renormalizable theory that hold to all orders of perturbation theory. Based on the principle of the reduction of couplings, one can construct Finite Unified Theories (FUTs) which are supersymmetric Grand Unified Theories that can be made all-order finite. The prediction of the top quark mass well in advance of its experimental discovery and the prediction of the light Higgs boson mass in the range GeV much earlier than its experimental discovery are among the celebrated successes of such models. Here, after a brief review of the reduction of couplings method and the properties of the resulting finiteness in supersymmetric theories, we analyse four phenomenologically favoured models: a minimal version of the , a finite , a finite model and a reduced version of the Minimal Supersymmetric Standard Model (MSSM). A relevant update in the phenomenological evaluation has been the improved light Higgs-boson mass prediction as provided by the latest version of . All four models predict relatively heavy supersymmetric spectra that start just below or above the TeV scale, consistent with the non-observation LHC results. Depending on the model, the lighter regions of the spectra could be accessible at CLIC, while the FCC-hh will be able to test large parts of predicted spectrum of each model. The lightest supersymmetric particle (LSP), which is a neutralino, is considered as a cold dark matter candidate and put to test using the latest code.

    hep-phFortsch.Phys.(2020)·13 citations
  8. 10*

    Renormalization Scale Setting for Heavy Quark Pair Production in Annihilation near the Threshold Region

    Sheng-Quan Wang🇨🇳 · Stanley J. Brodsky🇺🇸 · Xing-Gang Wu🇨🇳 · Leonardo Di Giustino🇮🇹 · Jian-Ming Shen🇨🇳

    Heavy fermion pair production in annihilation is a fundamental process in hadron physics and is of considerable interest for various phenomena. In this paper, we will apply the Principle of Maximum Conformality (PMC) to provide a comprehensive analysis of these processes. The PMC provides a systematic, unambiguous method for determining the renormalization scales of the QCD coupling constant for single-scale and multiple-scale applications. The resulting predictions eliminate any renormalization scheme-and-scale ambiguities, eliminate the factorial renormalon divergences, and are consistent with the requirements of the renormalization group. It is remarkable that two distinctly different scales are determined by using the PMC for heavy fermion pair production near the threshold region. One scale is the order of the fermion mass , which enters the hard virtual corrections, and the other scale is of order , where is the quark velocity, which enters the Coulomb rescattering amplitude. The PMC scales yield the correct physical behavior and reflect the virtuality of the propagating gluons (photons) for the QCD (QED) processes. Moreover, we demonstrate the consistency of PMC scale setting from QCD to QED. Perfect agreement between the Abelian unambiguous Gell-Mann-Low and the PMC scale-setting methods in the limit of zero number of colors is demonstrated.

    hep-phPRD(2020)·14 citations
  9. 11*

    Predictions for nuclear structure functions from the impact-parameter dependent Balitsky-Kovchegov equation

    J. Cepila🇨🇿 · J. G. Contreras🇨🇿 · M. Matas🇨🇿

    In this work we present dipole scattering amplitudes, including the dependence on the impact-parameter, for a variety of nuclear targets of interest for the electron-ion colliders (EICs) being currently designed. These amplitudes are obtained by numerically solving the Balitsky-Kovchegov equation with the collinearly improved kernel. Two different cases are studied: initial conditions representing the nucleus under consideration and the solutions based on an initial condition representing a proton complemented by a Glauber-Gribov prescription to obtain dipole-nucleus amplitudes. We find that the energy evolution of these two approaches differ. We use the obtained dipole scattering amplitudes to predict () nuclear structure functions that can be measured in deep-inelastic scattering at EICs and () nuclear suppression factors that reveal the energy evolution of shadowing for the different cases we studied. We compare our predictions with the available data.

    hep-phPRC(2020)·20 citations
  10. 12*

    Confronting Grand Unification with Lepton Flavour Violation, Dark Matter and LHC Data

    J. Ellis🇨🇭 · M.E. Gomez🇪🇸 · S. Lola🇬🇷 · R. Ruiz de Austri🇪🇸 · Q. Shafi🇺🇸

    We explore possible signatures for charged lepton flavour violation (LFV), sparticle discovery at the LHC and dark matter (DM) searches in grand unified theories (GUTs) based on SU(5), flipped SU(5) (FSU(5)) and SU(4)SU(2)SU(2) (4-2-2). We assume that soft supersymmetry-breaking terms preserve the group symmetry at some high input scale, and focus on the non-universal effects on different matter representations generated by gauge interactions at lower scales, as well as the charged LFV induced in Type-1 see-saw models of neutrino masses. We identify the different mechanisms that control the relic DM density in the various GUT models, and contrast their LFV and LHC signatures. The SU(5) and 4-2-2 models offer good detection prospects both at the LHC and in LFV searches, though with different LSP compositions, and the SU(5) and FSU(5) models offer LFV within the current reach. The 4-2-2 model allows chargino and gluino coannihilations with neutralinos, and the former offer good detection prospects for both the LHC and LFV, while gluino coannihilations lead to lower LFV rates. Our results indicate that LFV is a powerful tool that complements LHC and DM searches, providing significant insights into the sparticle spectra and neutrino mass parameters in different models.

    hep-phJHEP(2020)·9 citations
  11. 13*

    Search for tetraquark decays in 4 muons, , and channels at LHC

    C. Becchi🇮🇹 · A. Giachino🇮🇹 · L. Maiani🇮🇹 · E. Santopinto🇮🇹

    We perform a quantitative analysis of the tetraquark decays into hidden- and open-bottom mesons and calculate, for the first time, the tetraquark total decay width. On the basis of our results, we propose the decays as the most suitable channels to observe the tetraquark states, since the calculated two-lepton cross section upper limit, fb, is so large as to be potentially detectable with the 2018 LHCb sensitivity, paving the way to the observation of the tetraquark in the future LHCb upgrade. The signal for the ground state, , is likely to be too small even for the upgraded LHCb, but it may not be hopeless for the fully-bottom state.

    hep-phPLB(2020)·65 citations
  12. 14*

    Parton showers beyond leading logarithmic accuracy

    Mrinal Dasgupta🇬🇧 · Frédéric A. Dreyer🇬🇧 · Keith Hamilton🇬🇧 · Pier Francesco Monni🇨🇭 · Gavin P. Salam🇬🇧 · Gregory Soyez🇫🇷

    Parton showers are among the most widely used tools in collider physics. Despite their key importance, none so far has been able to demonstrate accuracy beyond a basic level known as leading logarithmic (LL) order, with ensuing limitations across a broad spectrum of physics applications. In this letter, we propose criteria for showers to be considered next-to-leading logarithmic (NLL) accurate. We then introduce new classes of shower, for final-state radiation, that satisfy the main elements of these criteria in the widely used large- limit. As a proof of concept, we demonstrate these showers' agreement with all-order analytical NLL calculations for a range of observables, something never so far achieved for any parton shower.

    hep-phPRL(2020)·205 citations
  13. 15*

    helicity form factors within light-cone sum rule approach

    Hai-Bing Fu🇨🇳 · Wei Cheng🇨🇳 · Rui-Yu Zhou🇨🇳 · Long Zeng🇨🇳

    In this paper, the helicity form factors (HFFs) are studied by applying the QCD light-cone sum rule (LCSR) approach. The calculation accuracy is up to next-to-leading order (NLO) gluon radiation correction of twist-(2,3) distribution amplitude. The resultant HFFs at large recoil point are , . In which, the contributions from three particles of the leading order (LO) are so small that can be safely neglected, and the maximal contribution of the NLO gluon radiation correction for is less than . After extrapolating the LCSR predictions for these HFFs to whole -region, we obtain the decay widths for semileptonic decay processes , which are consistent with BES-III collaboration predictions within errors. After considering the -meson lifetime, we give the branching fractions of with , our predictions also agree with BES-III collaboration within errors, especially for decay process. Finally, we present the forward-backward asymmetry and lepton convexity parameter , and further calculate the mean value of these two observations and , which may provide a way to test those HFFs in future experiments.

    hep-phCPC(2020)·8 citations
  14. 16*

    Probing Nucleons and Nuclei in High Energy Collisions

    Christine A. Aidala · Elke Aschenauer · Fatma Aslan · Alessandro Bacchetta · Ian Balitsky · Sanjin Benic · Shohini Bhattacharya · Mariaelena Boglione · Matthias Burkardt · Justin Cammarota · Giovanni A. Chirilli · Christopher Cocuzza and 78 other authors

    This volume is a collection of contributions for the 7-week program "Probing Nucleons and Nuclei in High Energy Collisions" that was held at the Institute for Nuclear Theory in Seattle, WA, USA, from October 1 until November 16, 2018. The program was dedicated to the physics of the Electron Ion Collider (EIC), the world's first polarized electron-nucleon (ep) and electron-nucleus (eA) collider to be constructed in the USA. These proceedings are organized by chapters, corresponding to the weeks of the program: Week I, Generalized parton distributions; Week II, Transverse spin and TMDs; Week III, Longitudinal spin; Week IV, Symposium week; Weeks V & VI, eA collisions; Week VII, pA and AA collisions. We hope these proceedings will be useful to readers as a compilation of EIC-related science at the end of the second decade of the XXI century.

    hep-phhep-exnucl-exnucl-th90 citations
  15. 17*

    Status of Intersection Theory and Feynman Integrals

    Sebastian Mizera🇺🇸

    We give a pedagogical review of the recently-introduced notion of a "scalar product" between Feynman integrals and how it helps us understand the analytic structure of the perturbative S-matrix. (This article is a contribution to the proceedings of the workshop "MathemAmplitudes 2019: Intersection Theory and Feynman Integrals" held in Padova, Italy on 18-20 December 2019.)

    hep-thhep-phPoS(2019)·74 citations
  16. 18*

    Oscillation of high-energy neutrinos from choked jets in stellar and merger ejecta

    Jose Carpio🇺🇸 · Kohta Murase🇺🇸

    We present a comprehensive study on oscillation of high-energy neutrinos from two different environments: blue supergiant progenitors that may harbor low-power gamma-ray burst (GRB) jets and neutron star merger ejecta that would be associated with short gamma-ray bursts. We incorporate the radiation constraint that gives a necessary condition for nonthermal neutrino production, and account for the time evolution of the jet, which allows us to treat neutrino oscillation in matter more accurately. For massive star progenitors, neutrino injection inside the star can lead to nonadiabatic oscillation patterns in the 1 TeV - 10 TeV and is also visible in the flavor ratio. For neutron star merger ejecta, we find a similar behavior in the 100 GeV - 10 TeV region and the oscillation may result in a excess around 1 TeV. These features, which enable us to probe the progenitors of long and short GRBs, could be seen by future neutrino detectors with precise flavor ratio measurements. We also discuss potential contributions to the diffuse neutrino flux measured by IceCube, and find parameter sets allowing choked low-power GRB jets to account for the neutrino flux in the 10 TeV - 100 TeV range without violating the existing constraints.

    astro-ph.HEhep-phPRD(2020)·23 citations
  17. 19*

    Cosmic microwave background bounds on primordial black holes including dark matter halo accretion

    Pasquale D. Serpico🇫🇷 · Vivian Poulin🇫🇷 · Derek Inman🇺🇸 · Kazunori Kohri🇯🇵

    Even if massive () primordial black holes (PBHs) can only account for a small fraction of the dark matter (DM) in the universe, they may still be responsible for a sizable fraction of the coalescence events measured by LIGO/Virgo, and/or act as progenitors of the supermassive black holes (SMBHs) observed already at high redshift (). In presence of a dominant, non-PBH DM component, the bounds set by CMB via an altered ionization history are modified. We revisit the cosmological accretion of a DM halo around PBHs via toy models and dedicated numerical simulations, deriving updated CMB bounds which also take into account the last Planck data release. We prove that these constraints dominate over other constraints available in the literature at masses (depending on uncertainty in accretion physics), reaching the level around . These tight bounds are nonetheless consistent with the hypothesis of a primordial origin of the SMBH massive seeds.

    astro-ph.COhep-phPRResearch(2020)·327 citations
  18. 20*

    Quarkonium production: An experimental overview

    Zebo Tang🇨🇳

    Quarkonium has been proposed as a sensitive probe of quark-gluon plasma (QGP) more than thirty years ago. Since then, lots of experimental efforts have been devoted to study its production in heavy-ion collisions to search for QGP and study its properties and significant progresses have been made. In this paper, an overview of recent experimental results on charmonium and bottomonium production in heavy-ion collisions as well as in small systems are presented. Furthermore, the results on exotic particle X(3872) production in Pb+Pb and p+p collisions are also discussed.

    nucl-exhep-phNPA(2021)·2 citations
  19. 21*

    ILD benchmark: Quartic Gauge Couplings

    Jakob Beyer🇩🇪 · Jenny List🇩🇪

    The quartic gauge coupling (QGC) of the electroweak interaction can be used as a probe for physics beyond the Standard Model and has been previously measured at the Large Hadron Collider. However, to achieve sensitivity to small deviations the couplings must be measured with precision beyond the capability of a hadron collider. An electron-positron collider with center-of-mass energies in the TeV range can precisely probe the QGC and test a variety of models. The International Linear Collider is such a collider project with a possible extension to TeV. In this note the critical reconstruction aspects of a QGC analysis in the vector boson scattering (VBS) channel of at TeV are identified for the International Large Detector. Generator level information from the event generator and simulation is used to gain access to influence of separate reconstruction effects. The separation of hadronic and decays by their invariant mass is chosen to quantify the strength of the effects. In the current simple reconstruction scheme the main obstacles are observed to be the removal of beam backgrounds, the jet clustering, and semi-leptonic decays within jets. At high center-of-mass energies of the VBS interaction jet clustering is found to no longer be a limiting factor. Points of optimizations are laid out for these aspects. In the case of semi-leptonic decays, proof-of-principal tests for corrections are performed and found to be challenging. A full analysis which includes the extraction of limits on anomalous QGCs remains open. Sensitivities similar to those achieved in generator level studies with approximated detector effects are expected.

    hep-exhep-ph2 citations
  20. 22*

    Effective Action from the Functional Renormalization Group

    Nobuyoshi Ohta🇯🇵 · Leslaw Rachwal🇨🇿

    We study the quantum gravitational system coupled to a charged scalar, Dirac fermions, and electromagnetic fields. We use the "exact" or "functional" renormalization group equation to derive the effective action by integrating the flow equation from the ultraviolet scale down to . The resulting effective action consists of local terms and nonlocal terms with unique coefficients.

    hep-thgr-qchep-phEPJC(2020)·20 citations
  21. 23*

    GW170817 and GW190425 as Hybrid Stars of Dark and Nuclear Matters

    Kilar Zhang🇹🇼 · Guo-Zhang Huang🇹🇼 · Jie-Shiun Tsao🇹🇼 · Feng-Li Lin🇹🇼

    We propose three scenarios for compact hybrid stars composed of nuclear and dark matter. These hybrid stars could provide alternative interpretations to the LIGO/Virgo events GW170817 and GW190425. To demonstrate our proposal, we solve the Tolman-Oppenheimer-Volkoff configurations of hybrid stars by using the SLy4, APR4, and SKb equations of state (EoS) for nuclear matter, and an EoS for a bosonic self interacting dark matter (SIDM) proposed by Colpi et al \cite{Colpi:1986ye}. We then obtain their mass-radius and tidal Love number (TLN)-mass relations, and further examine the possible saddle instability of these compact objects by the generalized Bardeen-Thorne-Meltzer (BTM) criteria. Our results show that the hybrid star scenarios are able to explain GW170817 and GW190425. Some hybrid stars can have compact neutron or mixed cores around 10 km while possessing thick dark matter shells, thus they can be more massive than the maximum mass of the typical neutron stars but are electromagnetically detected with about the same size of neutron stars. Reversely, we also infer the dark matter model from the parameter estimation of GW190425. Our proposed hybrid stars can be further tested by the coming LIGO/Virgo O3 events.

    astro-ph.HEgr-qchep-phhep-thEPJC(2022)·31 citations
  22. 24*

    Some non-trivial aspects of Poincaré and CPT invariance of flavor vacuum

    Massimo Blasone🇮🇹 · Petr Jizba🇨🇿 · Nikolaos E. Mavromatos🇬🇧 · Luca Smaldone🇨🇿

    We study the explicit form of Poincaré and discrete transformations of flavor states in a two-flavor scalar model, which represents the simplest example of the field mixing. Because of the particular form of the flavor vacuum condensate, we find that the aforementioned symmetries are spontaneously broken. The ensuing vacuum stability group is identified with the Euclidean group E(3). With the help of Fabri-Picasso theorem, we show that flavor vacua with different time labels and in different Lorentz frames are unitarily inequivalent to each other and they constitute a manifold of zero-flavor-charge states. Despite the spontaneous breakdown of Poincaré and CPT symmetries that characterises such vacua, we provide arguments on the absence of Goldstone Bosons. We also prove that the phenomenologically relevant oscillation formula is invariant under these transformations.

    hep-thhep-phmath-phmath.MPPRD(2020)·16 citations
  23. 25*

    Deformation of the gravitational wave spectrum by density perturbations

    Valerie Domcke🇩🇪 · Ryusuke Jinno🇩🇪 · Henrique Rubira🇩🇪

    We study the effect of primordial scalar curvature perturbations on the propagation of gravitational waves over cosmic distances. We point out that such curvature perturbations deform the isotropic spectrum of any stochastic background of gravitational waves of primordial origin through the (integrated) Sachs-Wolfe effect. Computing the changes in the amplitude and frequency of the propagating gravitational wave induced at linear order by scalar curvature perturbations, we show that the resulting deformation of each frequency bin of the gravitational wave spectrum is described by a linearly biased Gaussian with the variance , where denotes the amplitude of the primordial curvature perturbations. The linear bias encodes the correlations between the changes induced in the frequency and amplitude of the gravitational waves. Taking into account the latest bounds on from primordial black hole and gravitational wave searches, we demonstrate that the resulting deformation can be significant for extremely peaked gravitational wave spectra. We further provide an order of magnitude estimate for broad spectra, for which the net distortion is .

    astro-ph.COgr-qchep-phJCAP(2020)·30 citations
  24. 26*

    A new mechanism for symmetry breaking from nilmanifolds

    David Andriot🇦🇹 · Alan Cornell🇿🇦 · Aldo Deandrea🇫🇷 · Fabio Dogliotti🇫🇷 · Dimitrios Tsimpis🇫🇷

    We present a method to obtain a scalar potential at tree level from a pure gauge theory on nilmanifolds, a class of negatively-curved compact spaces, and discuss the spontaneous symmetry breaking mechanism induced in the residual Minkowski space after compactification at low energy. We show that the scalar potential is completely determined by the gauge symmetries and the geometry of the compact manifold. In order to allow for simple analytic calculations we consider three extra space dimensions as the minimal example of a nilmanifold, therefore considering a pure Yang-Mills theory in seven dimensions.

    hep-thhep-phJHEP(2020)·7 citations
  25. 27*

    Local Group star formation in warm and self-interacting dark matter cosmologies

    Mark R. Lovell (1,2)🇮🇸 · Wojciech Hellwing (3)🇵🇱 · Aaron Ludlow (4)🇦🇺 · Jesús Zavala (1)🇮🇸 · Andrew Robertson (2)🇬🇧 · Azadeh Fattahi (2)🇬🇧 · Carlos S. Frenk (2)🇬🇧 · Jennifer Hardwick (4) ((1) University of Iceland, (2) ICC Durham, (3) Warsaw, (4) ICRAR/UWA)🇦🇺

    The nature of the dark matter can affect the collapse time of dark matter haloes, and can therefore be imprinted in observables such as the stellar population ages and star formation histories of dwarf galaxies. In this paper we use high resolution hydrodynamical simulations of Local Group-analogue (LG) volumes in cold dark matter (CDM), sterile neutrino warm dark matter (WDM) and self-interacting dark matter (SIDM) models with the EAGLE galaxy formation code to study how galaxy formation times change with dark matter model. We are able to identify the same haloes in different simulations, since they share the same initial density field phases. We find that the stellar mass of galaxies depends systematically on resolution, and can differ by as much as a factor of two in haloes of a given dark matter mass. The evolution of the stellar populations in SIDM is largely identical to that of CDM, but in WDM early star formation is instead suppressed. The time at which LG haloes can begin to form stars through atomic cooling is delayed by 200~Myr in WDM models compared to CDM. It will be necessary to measure stellar ages of old populations to a precision of better than 100~Myr, and to address degeneracies with the redshift of reionization -- and potentially other baryonic processes -- in order to use these observables to distinguish between dark matter models.

    astro-ph.GAastro-ph.COhep-phMNRAS(2020)·23 citations
  26. 28*

    Finite-Temperature Quarkyonic Matter with an Excluded Volume Model

    Srimoyee Sen🇺🇸 · Neill C. Warrington🇺🇸

    We introduce a theoretical framework to analyze the thermal properties of a recently proposed "excluded volume" model of quarkyonic matter. This entails proposing finite temperature distribution functions and entropy functionals constrained by internal theoretical consistency. We use the formalism developed here to analyze the effect of temperature on the quark onset as a function of baryon density. We find that the baryon density at which the quarkyonic phase emerges decreases only slightly with temperature, an effect produced by large . We furthermore find that a finite temperature increases the density of quarks produced. The framework presented here can be used to compute the equation of state of hot and dense quarkyonic matter which is of relevance to neutron star mergers.

    nucl-thastro-ph.HEhep-phNPA(2021)·41 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.