PaperPanorama

HEP Phenomenology·hep-ph

Wed·Jun 17, 2020

31 papers22 primary·9 cross-listed·reconstructed*

  1. 01*

    Masses of Doubly Heavy Tetraquarks with Error Bars

    Eric Braaten🇺🇸 · Li-Ping He🇺🇸 · Abhishek Mohapatra🇺🇸

    In the heavy-quark limit, the two heavy quarks in a doubly heavy baryon or a doubly heavy tetraquark are bound by their color-Coulomb potential into a compact diquark. The doubly heavy hadrons are related by the approximate heavy-quark--diquark symmetry of QCD to the heavy hadrons obtained by replacing the heavy diquark by a heavy antiquark. Effective field theories can be used to expand the masses of singly heavy hadrons and doubly heavy hadrons in inverse powers of the heavy quark masses. The coefficients in the expansions for doubly heavy tetraquarks can be determined from those for heavy mesons, heavy baryons, and doubly heavy baryons using heavy-quark--diquark symmetry. We predict the masses of the ground-state doubly heavy tetraquarks with error bars using as inputs the masses of heavy mesons and heavy baryons measured in experiments and the masses of doubly heavy baryons calculated using lattice QCD. The only doubly heavy tetraquarks predicted to be stable with respect to strong decays are tetraquarks with light flavor , and .

    hep-phhep-exPRD(2021)·85 citations
  2. 02*

    Anomaly-free 2HDMs with a gauged abelian symmetry and two generations of right-handed neutrinos

    Astrid Ordell🇸🇪 · Roman Pasechnik🇸🇪 · Hugo Serôdio🇸🇪

    Despite the popularity of two-Higgs-doublet models (2HDMs) with a gauged abelian flavor symmetry, the allowed Yukawa textures have only been partly explored so far. In this work, we classify and compare every anomaly-free instance, in the case of having two generations of right-handed neutrinos and a type-I seesaw mechanism. We found 16 valid implementations in total, out of which 11 agree well with current experimental bounds. To our knowledge, neither of these models have been considered previously.

    hep-phPRD(2020)·7 citations
  3. 03*

    Eikonal amplitudes for three-hard legs processes at finite-N

    Kamel Khelifa-Kerfa🇸🇦 · Yazid Delenda🇩🇿

    We extend our previous work on scattering amplitudes [1] to hadron collisions. We provide a general formalism for the computation of eikonal amplitudes squared for the radiation of soft and energy-ordered gluons off three hard-legs at finite-N to any order in the perturbative expansion. Examples of three-hard legs processes include vector/Higgs boson production in association with a single hard jet and dijet production in DIS. Explicit expressions for the radiation of up to four gluons are provided as an illustration of the formalism.

    hep-phhep-thPLB(2020)·7 citations
  4. 04*

    Reflections upon the Emergence of Hadronic Mass

    Craig D. Roberts🇨🇳 · Sebastian M. Schmidt🇩🇪

    With discovery of the Higgs boson, science has located the source for % of the mass of visible matter. The focus of attention can now shift to the search for the origin of the remaining %. The instruments at work here must be capable of simultaneously generating the 1 GeV mass-scale associated with the nucleon and ensuring that this mass-scale is completely hidden in the chiral-limit pion. This hunt for an understanding of the emergence of hadronic mass (EHM) has actually been underway for many years. What is changing are the impacts of QCD-related theory, through the elucidation of clear signals for EHM in hadron observables, and the ability of modern and planned experimental facilities to access these observables. These developments are exemplified in a discussion of the evolving understanding of pion and kaon parton distributions.

    hep-phhep-exhep-latnucl-ex+1Eur.Phys.J.ST(2020)·62 citations
  5. 05*

    Quark spin - thermal vorticity alignment and the Lambda, anti-Lambda polarization in heavy-ion collisions

    Alejandro Ayala🇲🇽 · David de la Cruz🇲🇽 · L. A. Hernández🇲🇽 · S. Hernández-Ortíz🇺🇸 · Jordi Salinas🇲🇽

    It has been proposed that the and polarizations observed in heavy-ion collisions are due to the interaction between quark spin and thermal vorticity. In this work we report on a computation of the relaxation time required for this alignment to occur at finite temperature and baryon chemical potential, considering quarks with a finite mass. The calculation is performed after modelling the interaction by means of an effective vertex which couples the thermal gluons and quarks within the vortical medium. We show that the effect of the quark mass is to reduce the relaxation time as compared to the massless quark case. An intrinsic global polarization of quarks/antiquarks emerges which is shown to be linked with the / polarization.

    hep-phnucl-thJ.Phys.Conf.Ser.(2020)·1 citation
  6. 06*

    Gravitational Wave Signatures of Lepton Universality Violation

    Bartosz Fornal🇺🇸

    We analyze the prospects for using gravitational waves produced in early universe phase transitions as a complementary probe of the flavor anomalies in B meson decays. We focus on the Left-Right SU(4) Model, for which the strength of the observed lepton universality violation and consistency with other experiments impose a vast hierarchy between the symmetry breaking scales. This leads to a multipeaked gravitational wave signature within the reach of upcoming gravitational wave detectors.

    hep-phastro-ph.COPRD(2021)·23 citations
  7. 07*

    The Light Sgoldstino Phenomenology: Explanations for the Muon Deviation and KOTO Anomaly

    Xuewen Liu🇨🇳 · Ying Li🇨🇳 · Tianjun Li🇨🇳 · Bin Zhu🇨🇳

    In this work, we study the long-standing experimental anomaly in muon and also recent anomalous excess in at the J-PARC KOTO experiment with sgoldstino. After supersymmetry breaking, the interactions between quarks and sgoldstino () make the decays sizable through loop diagrams, which affects the measurements of decays . Furthermore, the couplings between photons and sgoldstino contribute to as well as the bino-slepton contribution. With satisfying all known experimental constraints such as from NA62, E949, E137, Orsay, KTEV and CHARM experiments, these two anomalies can be explained simultaneously. The mass of CP-even sgoldstino is close to the neutral pion mass which does not violate the Grossman-Nir bound. The parameter space can be further tested in future NA62, DUNE experiments, as well as experiments in the LHC.

    hep-phhep-exJHEP(2020)·7 citations
  8. 08*

    Modified Excluded Volume Hadron Resonance Gas Model with Lorentz Contraction

    Somenath Pal🇮🇳 · Abhijit Bhattacharyya🇮🇳 · Rajarshi Ray🇮🇳

    In this work we discuss a modified version of Excluded Volume Hadron Resonance Gas model and also study the effect of Lorentz contraction of the excluded volume on scaled pressure and susceptibilities of conserved charges. We find that the Lorentz contraction, coupled with the variety of excluded volume parameters reproduce the lattice QCD data quite satisfactorily.

    hep-phnucl-thNPA(2021)·8 citations
  9. 09*

    Bounds on Dipole Moments of hidden Dark Matter through kinetic mixing

    D. T. Binh🇻🇳 · V. H. Binh🇻🇳 · H. N. Long🇻🇳

    The existence of dark sectors, consisting of weakly-coupled particles that do not interact with the known Standard Model forces, is theoretically and phenomenologically motivated. The hidden particles are candidates for Dark Matter and can interact with photon through electric dipole moment (EDM) and magnetic dipole moment (MDM). We investigate the possibility a hidden sector's Dark Matter which is charged under a hidden gauge symmetry can interact with photon at loop level. We evaluate the scattering cross section of hidden Dirac fermion with nuclei and set bounds for dipole moment. Using the results of the XENON1T experiment for direct detection of Dark Matter, we get bounds of electromagnetic dipole moment for mass GeV : and electric dipole moment . Using the condition of the existence of dipole moment we constraint the kinetic mixing parameter and the mass of the hidden gauge boson to be in the range of 5 GeV 9 GeV. Our results complement previous works and are within detection capability of LHC.

    hep-ph4 citations
  10. 10*

    Thermodynamics of heavy quarkonium in magnetic field background

    Jing Zhou🇨🇳 · Xun Chen🇨🇳 · Yan-Qing Zhao🇨🇳 · Jialun Ping🇨🇳

    We study the effect of magnetic field on heavy quark-antiquark pair in both Einstein-Maxwell(EM) and Einstein-Maxwell-Dilaton(EMD) model. The interquark distance, free energy, entropy, binding energy and internal energy of the heavy quarkonium are calculated. It is found that the free energy suppresses and the entropy increases quickly with the increase of the magnetic field . The binding energy vanishes at smaller distance when increasing the magnetic field, which indicates the quark-antiquark pair dissociates at smaller distance. The internal energy which consists of free energy and entropy will increase at large separating distance for non-vanishing magnetic field. These conclusions are consistent both in the EM and EMD model. Moreover, we also find that the quarkonium will dissociate easier in the parallel direction than that in the transverse direction for EMD model, but the conclusion is opposite in EM model. Lattice results are in favor of EMD model. Besides, a Coulomb-plus-linear potential(Cornell potential) can be realized only in EMD model. Thus, a dilaton field is proved to be important in holographic model. Finally, we also show that the free energy, entropy and internal energy of a single quark in EMD model with the presence of magnetic field.

    hep-phPRD(2020)·55 citations
  11. 11*

    Electroweak Top Couplings, Partial Compositeness and Top Partner Searches

    Stephen Brown🇬🇧 · Christoph Englert🇬🇧 · Peter Galler🇬🇧 · Panagiotis Stylianou🇬🇧

    Partial top quark compositeness is a crucial aspect of theories with strong electroweak symmetry breaking. Together with the heavy top partners that lift the top quark mass to its observed value, these theories predict correlated modifications of the top quark's electroweak couplings. Associated measurements therefore provide direct constraints on the ultraviolet structure of the underlying hypercolour dynamics. In this paper we employ a minimal version of top compositeness to discuss how measurements related to the top's electroweak gauge interactions can inform the potential composite nature of the TeV scale. In doing so, we identify the dominant factors that limit the BSM sensitivity. Extrapolating to a future 100 TeV hadron collider, we demonstrate that top quark measurements performed at highest precision can provide complementary information to resonance search by performing a representative resonant top partner search that specifically targets the correlated resonant electroweak top partner signatures.

    hep-phhep-exPRD(2020)·11 citations
  12. 12*

    Studying resonances in the reaction

    Bo-Chao Liu🇨🇳 · Ke Wang🇨🇳

    In this work, we make a theoretical study on the reaction for antiproton beam energy from threshold to 4GeV within an effective Lagrangian approach and isobar model. By assuming this reaction is dominated by the excitation of and resonances in intermediate states, we calculate the total cross sections and give the predictions of the angular distribution and invariant mass spectrum of final particles. In particular, we discuss the possibility to verify the existence of a narrow resonance found in the process of in the present reaction. It shows that the reaction can provide us with valuable information about the resonances having significant couplings to and channels. Thus the experimental data of this reaction will be a good supplement to the scattering data for studying resonances.

    hep-phnucl-thPRD(2020)·2 citations
  13. 13*

    Pseudothermalization of the quark-gluon plasma

    Michael Strickland🇺🇸

    In this proceedings contribution I review recent work in kinetic theory which demonstrates that, for system undergoing Bjorken expansion, there exists an attractor in all moments of the one-particle distribution function. I discuss how this attractor emerges in both exact solutions obtained in relaxation time approximation (RTA) and the effective kinetic theory approach to high-temperature quantum chromodynamics (QCD). The QCD effective kinetic theory collisional kernel used includes both elastic (2 <-> 2) and LPM-resummed inelastic (2 <-> 1) contributions. The results obtained indicate that a pseudothermal attractor exists in both RTA and QCD kinetic theory and that their respective attractors can be extended to early times when the system is far from equilibrium. Finally, I discuss how knowledge of the QCD effective kinetic theory attractor can be used to assess different hydrodynamic freeze-out prescriptions used in heavy-ion phenomenology. The results obtained show that improved freeze-out prescriptions such as anisotropic hydrodynamics perform better in conditions corresponding to those generated in high-multiplicity pA and pp collisions, e.g. short lifetime and high inverse Reynolds number.

    hep-phnucl-thJ.Phys.Conf.Ser.(2020)·2 citations
  14. 14*

    The Z\gamma{} transverse-momentum spectrum at NNLO+N3LL

    Marius Wiesemann🇩🇪 · Luca Rottoli🇮🇹 · Paolo Torrielli🇮🇹

    We consider the transverse-momentum () distribution of pairs produced in hadronic collisions. Logarithmically enhanced contributions at small are resummed to all orders in QCD perturbation theory and combined with the fixed-order prediction. We achieve the most advanced prediction for the spectrum by matching next-to-next-to-next-to-leading logarithmic (NLL) resummation to the integrated cross section at next-to-next-to-leading order (NNLO). By considering production at the fully differential level, including spin correlations, interferences and off-shell effects, arbitrary cuts can be applied to the leptons and the photon. We present results at the LHC in presence of fiducial cuts and find agreement with the \,TeV ATLAS data at the few-percent level.

    hep-phhep-exPLB(2020)·26 citations
  15. 15*

    A generalization of the Levinson theorem about the asymptotic value of the scattering phase shift

    M. I. Krivoruchenko🇷🇺 · K. S. Tyrin🇷🇺

    In quantum scattering theory, there exists a relationship between the difference in the scattering phase shifts at threshold and infinity and the number of bound states, which is established by the Levinson theorem. The presence of Castillejo, Dalitz and Dyson poles in the scattering amplitude, as well as Jaffe and Low primitives, corresponding to zeros of function on the unitary cut, modify the Levinson theorem. The asymptotic value of the scattering phase shift is shown to be determined by the number of bound states, the number of Castillejo, Dalitz and Dyson poles, and the number of primitives. Some consequences of the generalized theorem with respect to properties of nucleon-nucleon interactions are discussed.

    hep-phmath-phmath.MPPhys.Atom.Nucl.(2021)·2 citations
  16. 16*

    Tree-level Interference in VBF production of Vh

    Daniel Stolarski🇨🇦 · Yongcheng Wu🇨🇦

    Vector boson scattering is a well known probe of electroweak symmetry breaking. Here we study a related process of two electroweak vector bosons scattering into a vector boson and a Higgs boson (). This process exhibits tree level interference and grows with energy if the Higgs couplings to electroweak bosons deviate from their Standard Model values. Therefore, this process is particularly sensitive to the relative sign of the ratio of the coupling between the Higgs and the and , . In this work we show that a high energy lepton collider is well suited to study this process through vector boson fusion, estimate the potential sensitivity to this ratio, and show that a relatively modest amount of data can exclude .

    hep-phPRD(2020)·17 citations
  17. 17*

    Hydrodynamic attractor of a hybrid viscous fluid in Bjorken flow

    Toshali Mitra🇮🇳 · Sukrut Mondkar🇮🇳 · Ayan Mukhopadhyay🇮🇳 · Anton Rebhan🇦🇹 · Alexander Soloviev🇺🇸

    The nonequilibrium evolution in a boost-invariant Bjorken flow of a hybrid viscous fluid model containing two interacting components with different viscosities, such that they represent strongly and weakly self-coupled sectors, is shown to be characterized by a hydrodynamic attractor which has an early-time behavior that is reminiscent of the so-called bottom-up thermalization scenario in heavy-ion collisions. The hydrodynamization times for the two sectors can differ strongly, with details depending on the curve realized on the two-dimensional attractor surface, which might account for different scenarios for small and large systems in nuclear collisions. The total system behaves like a single viscous fluid with a dynamically determined effective shear viscosity.

    hep-phhep-thnucl-thPRResearch(2020)·24 citations
  18. 18*

    The Impact of Different Parameterizations on the Interpretation of CP Violation in Neutrino Oscillations

    Peter B. Denton🇺🇸 · Rebekah Pestes🇺🇸

    CP violation in the lepton mass matrix will be probed with good precision in upcoming experiments. The amount of CP violation present in oscillations can be quantified in numerous ways and is typically parameterized by the complex phase in the standard PDG definition of the lepton mixing matrix. There are additional parameterizations of the lepton mixing matrix as well. Through various examples, we explore how, given the current data, different parameterizations can lead to different conclusions when working with parameterization dependent variables, such as . We demonstrate how the smallness of governs the scale of these results. We then demonstrate how can be misleading and argue that the Jarlskog is the cleanest means of presenting the amount of CP violation in the lepton sector. We also confirm that, among the different parameterizations considered, the standard PDG parameterization has a number of convenient features.

    hep-phhep-exJHEP(2021)·33 citations
  19. 19*

    Searching for Dark Matter Signals in Timing Spectra at Neutrino Experiments

    Bhaskar Dutta🇺🇸 · Doojin Kim🇺🇸 · Shu Liao🇺🇸 · Jong-Chul Park🇰🇷 · Seodong Shin🇰🇷 · Louis E. Strigari🇺🇸 · Adrian Thompson🇺🇸

    The sensitivity to dark matter signals at neutrino experiments is fundamentally challenged by the neutrino rates, as they leave similar signatures in their detectors. As a way to improve the signal sensitivity, we investigate a dark matter search strategy which utilizes the timing and energy spectra to discriminate dark matter from neutrino signals at low-energy, pulsed-beam neutrino experiments. This strategy was proposed in our companion paper arXiv:1906.10745, which we apply to potential searches at COHERENT, JSNS, and CCM. These experiments are not only sources of neutrinos but also high intensity sources of photons. The dark matter candidate of interest comes from the relatively prompt decay of a dark sector gauge boson which may replace a Standard-Model photon, so the delayed neutrino events can be suppressed by keeping prompt events only. Furthermore, prompt neutrino events can be rejected by a cut in recoil energy spectra, as their incoming energy is relatively small and bounded from above while dark matter may deposit a sizable energy beyond it. We apply the search strategy of imposing a combination of energy and timing cuts to the existing CsI data of the COHERENT experiment as a concrete example, and report a mild excess beyond known backgrounds. We then investigate the expected sensitivity reaches to dark matter signals in our benchmark experiments.

    hep-phhep-exJHEP(2022)·53 citations
  20. 20*

    Simplified fast detector simulation in MadAnalysis 5

    Jack Y. Araz🇨🇦 · Benjamin Fuks🇫🇷 · Georgios Polykratis🇫🇷

    We introduce a new simplified fast detector simulator in the MadAnalysis 5 platform. The Python-like interpreter of the programme has been augmented by new commands allowing for a detector parametrisation through smearing and efficiency functions. On run time, an associated C++ code is automatically generated and executed to produce reconstructed-level events. In addition, we have extended the MadAnalysis 5 recasting infrastructure to support our detector emulator, and we provide predefined LHC detector configurations. We have compared predictions obtained with our approach to those resulting from the usage of the Delphes 3 software, both for Standard Model processes and a few new physics signals. Results generally agree to a level of about 10% or better, the largest differences in the predictions stemming from the different strategies that are followed to model specific detector effects. Equipped with these new functionalities, MadAnalysis 5 now offers a new user-friendly way to include detector effects when analysing collider events, the simulation of the detector and the analysis being both handled either through a set of intuitive Python commands or directly within the C++ core of the platform.

    hep-phhep-exEPJC(2021)·94 citations
  21. 21*

    Reheating-Induced Axion Dark Matter After Low Scale Inflation

    Takeshi Kobayashi🇯🇵 · Lorenzo Ubaldi🇮🇹

    A kinetic mixing between the axion and the inflaton allows for a production of axion dark matter even if the inflationary Hubble scale is smaller than the zero-temperature axion mass. We analyze the axion dynamics in this recently discovered "inflaxion" framework, and present a new cosmological scenario where the axion drifts away from its vacuum during the reheating epoch, giving rise to the observed dark matter abundance. We discuss the implications for both the QCD axion and axion-like particles.

    hep-phastro-ph.COJHEP(2020)·8 citations
  22. 22*

    Nonrelativistic model of tetraquarks and predictions for their masses from fits to charmed and bottom meson data

    Per Lundhammar🇸🇪 · Tommy Ohlsson🇸🇪

    We investigate a nonrelativistic model of tetraquarks, which are assumed to be compact and to consist of diquark-antidiquark pairs. We fit, for the first time, basically all currently known values for the measured masses of 45 mesons, including both charmed and bottom mesons, to the model and predict masses of tetraquarks as well as diquarks. In particular, we find masses of four axial-vector diquarks, i.e., , , , and , where , and 24 ground-state tetraquarks, including both heavy-light tetraquarks ( and ) and heavy tetraquarks ( and ). In general, our results for the masses of , , and are largely comparable with other reported results, whereas our results for the masses of are slightly larger than what has been found earlier. Finally, we identify some of the obtained predictions for masses of tetraquarks with masses of experimental tetraquark candidates, and especially, we find that , , and could be described by the model.

    hep-phhep-exnucl-exnucl-thPRD(2020)·71 citations
  23. 23*

    Singularities and Phenomenological aspects of Asymptotic Safe Gravity

    Vasilios Zarikas🇰🇿 · Georgios Kofinas🇬🇷

    Asymptotic Safety (AS) Program for quantum gravity keeps the same fields and symmetries with General Relativity and studies the associated gravitational action as a fundamental part of the complete theory at the nonperturbative level with the help of functional renormalization group (RG) techniques. An important phenomenological task that can test the new point of view of AS approach is the discovery of RG improved cosmologies and black holes. In this work, we analyze the properties of recently found non-singular spherically symmetric and non-singular cosmological solutions. Furthermore, we derive a novel consistent set of modified Einstein field equations, in the spirit of AS, which respects the Bianchi identities. This new set of equations extend previously published modified Einstein equations which arise by adding appropriate covariant kinetic terms to the action.

    gr-qcastro-ph.COhep-phhep-thJ.Phys.Conf.Ser.(2018)·3 citations
  24. 24*

    Criticality from Einstein-Maxwell-dilaton holography at finite temperature and density

    Alfonso Ballon-Bayona🇧🇷 · Henrique Boschi-Filho🇧🇷 · Eduardo Folco Capossoli🇧🇷 · Diego M. Rodrigues🇧🇷

    We investigate consistent charged black hole solutions to the Einstein-Maxwell-Dilaton (EMD) equations that are asymptotically AdS. The solutions are gravity duals to phases of a non-conformal plasma at finite temperature and density. For the dilaton we take a quadratic ansatz leading to linear confinement at zero temperature and density. We consider a grand canonical ensemble, where the chemical potential is fixed, and find a rich phase diagram involving the competition of small and large black holes. The phase diagram contains a critical line and a critical point similar to the van der Waals-Maxwell liquid-gas transition. As the critical point is approached, we show that the trace anomaly in the plasma phases vanishes signifying the restoration of conformal symmetry in the fluid. We find that the heat capacity and charge susceptibility diverge as and at the critical point with universal critical exponents . Our results suggest a description of the thermodynamics near the critical point in terms of catastrophe theories. In the limit we compare our results with lattice results for Yang-Mills theories.

    hep-thhep-lathep-phPRD(2020)·42 citations
  25. 25*

    Analytical attractor for Bjorken expansion

    Jean-Paul Blaizot🇫🇷 · Li Yan🇨🇳

    We present an analytic solution of a simple set of equations that govern the expansion of boost-invariant plasmas of massless particles. These equations describe, approximately, the early time, collisionless regime, and the transition to hydrodynamics at late time. Their mathematical structure encompasses all versions of second order hydrodynamics when applied to Bjorken flows. The analytic solution provides an explicit expression for the attractor solution that connects the collisionless regime to hydrodynamics. It also constitutes a neat example of an application of the theory of resurgence in asymptotic series.

    nucl-thhep-phPLB(2021)·50 citations
  26. 26*

    Enhanced yield ratio of light nuclei in heavy ion collisions with a first-order QCD phase transition

    Kai-Jia Sun🇺🇸 · Che Ming Ko🇺🇸 · Feng Li🇨🇳 · Jun Xu🇨🇳 · Lie-Wen Chen🇨🇳

    Using a transport model that includes a first-order chiral phase transition between the partonic and the hadronic matter, we study the development of density fluctuations in the matter produced in heavy ion collisions as it undergoes the phase transition, and their time evolution in later hadronic stage of the collisions. Using the coalescence model to describe the production of deuterons and tritons from nucleons at the kinetic freeze out, we find that the yield ratio , where , , and are, respectively, the proton, deuteron, and triton numbers, is enhanced if the evolution trajectory of the produced matter in the QCD phase diagram passes through the spinodal region of a first-order chiral phase transition.

    nucl-thhep-phEPJA(2021)·26 citations
  27. 27*

    Dynamically induced Planck scale and inflation in the Palatini formulation

    Ioannis D. Gialamas🇬🇷 · Alexandros Karam🇪🇪 · Antonio Racioppi🇪🇪

    We study non-minimal Coleman-Weinberg inflation in the Palatini formulation of gravity in the presence of an term. The Planck scale is dynamically generated by the vacuum expectation value of the inflaton via its non-minimal coupling to the curvature scalar . We show that the addition of the term in Palatini gravity makes non-minimal Coleman-Weinberg inflation again compatible with observational data.

    gr-qcastro-ph.COhep-phhep-thJCAP(2020)·100 citations
  28. 28*

    Finding eV-scale Light Relics with Cosmological Observables

    Nicholas DePorzio🇺🇸 · Weishuang Linda Xu🇺🇸 · Julian B. Muñoz🇺🇸 · Cora Dvorkin (Harvard)🇺🇸

    Cosmological data provide a powerful tool in the search for physics beyond the Standard Model (SM). An interesting target are light relics, new degrees of freedom which decoupled from the SM while relativistic. Nearly massless relics contribute to the radiation energy budget, and are commonly parametrized as variations in the effective number of neutrino species. Additionally, relics with masses greater than eV become non-relativistic before today, and thus behave as matter instead of radiation. This leaves an imprint in the clustering of the large-scale structure of the universe, as light relics have important streaming motions, mirroring the case of massive neutrinos. Here we forecast how well current and upcoming cosmological surveys can probe light massive relics (LiMRs). We consider minimal extensions to the SM by both fermionic and bosonic relic degrees of freedom. By combining current and upcoming cosmic-microwave-background and large-scale-structure surveys, we forecast the significance at which each LiMR, with different masses and temperatures, can be detected. We find that a very large coverage of parameter space will be attainable by upcoming experiments, opening the possibility of exploring uncharted territory for new physics beyond the SM.

    astro-ph.COhep-phPRD(2021)·41 citations
  29. 29*

    Accurately Weighing Neutrinos with Cosmological Surveys

    Weishuang Linda Xu🇺🇸 · Nicholas DePorzio🇺🇸 · Julian B. Muñoz🇺🇸 · Cora Dvorkin (Harvard)🇺🇸

    A promising avenue to measure the total, and potentially individual, mass of neutrinos consists of leveraging cosmological datasets, such as the cosmic microwave background and surveys of the large-scale structure of the universe. In order to obtain unbiased estimates of the neutrino mass, however, many effects ought to be included. Here we forecast, via a Markov Chain Monte Carlo likelihood analysis, whether measurements by two galaxy surveys: DESI and {\it Euclid}, when added to the CMB-S4 experiment, are sensitive to two effects that can alter neutrino-mass measurements. The first is the slight difference in the suppression of matter fluctuations that each neutrino-mass hierarchy generates, at fixed total mass. The second is the growth-induced scale-dependent bias (GISDB) of haloes produced by massive neutrinos. We find that near-future surveys can distinguish hierarchies with the same total mass only at the level; thus, while these are poised to deliver a measurement of the sum of neutrino masses, they cannot significantly discern the mass of each individual neutrino in the foreseeable future. We further find that neglecting the GISDB induces up to a overestimation of the total neutrino mass, and we show how to absorb this effect via a redshift-dependent parametrization of the scale-independent bias.

    astro-ph.COhep-phPRD(2021)·30 citations
  30. 30*

    Phase diagram and compact stars in a holographic QCD model

    Luis A. H. Mamani🇧🇷 · Cesar V. Flores🇧🇷 · Vilson T. Zanchin🇧🇷

    A holographic model is used to investigate the thermodynamics and the phase diagram of a heavy quarks system. From such a model we obtain an equation of state and explore its applicability in astrophysical conditions. For this objective, we work in the context of the Einstein-Maxwell-Dilaton (EMD) holographic model for quantum chromodynamics (QCD). At first, we show the existence of a critical point where the first-order transitions line ends, later on, we calculated an analytic expression for the equation of state. Additionally, with the aim of investigating the global properties of compact stars, such as the total gravitational mass and radius, the equation of state is used to solve the Tolman-Oppenheimer-Volkov (TOV) equations for stellar structure. The numerical results show that our equation of state is able to reproduce the expected behavior of hybrid stars. Our main conclusion is that, by using an equation of state emerging in the framework of the EMD holographic model for QCD, it is possible to obtain quark matter properties and that it is also possible to extend the procedure to astrophysical applications.

    hep-thgr-qchep-phPRD(2020)·33 citations
  31. 31*

    A double integral of dlog forms which is not polylogarithmic

    Francis Brown🇬🇧 · Claude Duhr🇨🇭

    Feynman integrals are central to all calculations in perturbative Quantum Field Theory. They often give rise to iterated integrals of dlog-forms with algebraic arguments, which in many cases can be evaluated in terms of multiple polylogarithms. This has led to certain folklore beliefs in the community stating that all such integrals evaluate to polylogarithms. Here we discuss a concrete example of a double iterated integral of two dlog-forms that evaluates to a period of a cusp form. The motivic versions of these integrals are shown to be algebraically independent from all multiple polylogarithms evaluated at algebraic arguments. From a mathematical perspective, we study a mixed elliptic Hodge structure arising from a simple geometric configuration in , consisting of a modular plane elliptic curve and a set of lines which meet it at torsion points, which may provide an interesting worked example from the point of view of periods, extensions of motives, and L-functions.

    hep-thhep-phmath.NTPoS(2022)·60 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.