PaperPanorama

HEP Phenomenology·hep-ph

Wed·Dec 19, 2018

42 papers—26 primary·16 cross-listed·reconstructed*

  1. 01*

    Structure Formation and Exotic Compact Objects in a Dissipative Dark Sector

    Jae Hyeok Chang🇺🇸 · Daniel Egana-Ugrinovic🇺🇸 · Rouven Essig🇺🇸 · Chris Kouvaris🇩🇰

    We present the complete history of structure formation in a simple dissipative dark-sector model. The model has only two particles: a dark electron, which is a subdominant component of dark matter, and a dark photon. Dark-electron perturbations grow from primordial overdensities, become non-linear, and form dense dark galaxies. Bremsstrahlung cooling leads to fragmentation of the dark-electron halos into clumps that vary in size from a few to millions of solar masses, depending on the particle model parameters. In particular, we show that asymmetric dark stars and black holes form within the Milky Way from the collapse of dark electrons. These exotic compact objects may be detected and their properties measured at new high-precision astronomical observatories, giving insight into the particle nature of the dark sector without the requirement of non-gravitational interactions with the visible sector.

    hep-phastro-ph.GAastro-ph.SRJCAP(2019)·112 citations
  2. 02*

    WIMP dark matter in the parity solution to the strong CP problem

    Junichiro Kawamura🇺🇸 · Shohei Okawa🇨🇦 · Yuji Omura🇯🇵 · Yong Tang🇯🇵

    We extend the Standard Model (SM) with parity symmetry, motivated by the strong CP problem and dark matter. In our model, parity symmetry is conserved at high energy by introducing a mirror sector with the extra gauge symmetry, . The charges of are assigned to the mirror fields in the same way as in the SM, but the chiralities of the mirror fermions are opposite to respect the parity symmetry. The strong CP problem is resolved, since the mirror quarks are also charged under the in the SM. In the minimal setup, the mirror gauge symmetry leads to stable colored particles which would be inconsistent with the observed data, so that we introduce two scalars in order to deplete the stable colored particles. Interestingly, one of the scalars becomes stable because of the gauge symmetry and therefore can be a good dark matter candidate. We especially study the phenomenology relevant to the dark matter, i.e. thermal relic density, direct and indirect searches for the dark matter. The bounds from the LHC experiment and the Landau pole are also taken into account. As a result, we find that a limited region is viable: the mirror up quark mass is around [600\,GeV, 3\,TeV] and the relative mass difference between the dark matter and the mirror up quark or electron is about (1-10\,\%). We also discuss the neutrino sector and show that the right-handed neutrinos in the mirror sector can increase the effective number of neutrinos or dark radiation by .

    hep-phhep-exJHEP(2019)·14 citations
  3. 03*

    Role of Bloch Waves in baryon-number violating processes

    Yu-Cheng Qiu🇨🇳 · S.-H. Henry Tye🇨🇳

    In the Bloch-wave approach to estimate the baryon-number-violating scattering cross section in the standard electroweak theory in the laboratory, we clarify the relation between the single sphaleron barrier and multiple (near periodic) sphaleron barrier cases. We explain how a realistic consideration modifies/corrects the idealized Bloch wave and the resonant tunneling approximation. The basic approach is in part analogous to the well-known triple- process to form carbon in nucleosynthesis.

    hep-phPRD(2019)·12 citations
  4. 04*

    Model independent study for the anomalous quartic couplings at Future Electron-Proton Colliders

    V. Ari🇹🇷 · E. Gurkanli🇹🇷 · A. A. Billur🇹🇷 · M. Koksal🇹🇷

    The Large Hadron Electron Collider and the Future Circular Collider-hadron electron with high center-of-mass energy and luminosity allow to better understand the Standard Model and to examine new physics beyond the Standard Model in the electroweak sector. Multi-boson processes permit for a measurement of the gauge boson self-interactions of the Standard Model that can be used to determine the anomalous gauge boson couplings. For this purpose, we present a study of the process at the Large Hadron Electron Collider with center-of-mass energies of 1.30, 1.98 TeV and at the Future Circular Collider-hadron electron with center-of-mass energies of 7.07, 10 TeV to interpret the anomalous quartic gauge couplings using a model independent way in the framework of effective field theory. We obtain the sensitivity limits at Confidence Level on 13 different anomalous couplings arising from dimension-8 operators. The best limit in () parameters is obtained for parameter while the best sensitivity derived on () parameters is obtained for . In addition, this study is the first report on the anomalous quartic couplings determined by effective Lagrangians at colliders.

    hep-phNPB(2020)·11 citations
  5. 05*

    Unravelling High-Energy Hadron Structures with Lattice QCD

    Yong Zhao🇺🇸

    Parton distribution functions are key quantities for us to understand the hadronic structures in high-energy scattering, but they are difficult to calculate from lattice QCD. Recent years have seen fast development of the large-momentum effective theory which allows extraction of the -dependence of parton distribution functions from a quasi-parton distribution function that can be directly calculated on lattice. The extraction is based on a factorization formula for the quasi-parton distribution function that has been derived rigorously in perturbation theory. A systematic procedure that includes renormalization, perturbative matching, and power corrections has been established to calculate parton distribution functions. Latest progress from lattice QCD has shown promising signs that it will become an effective tool for calculating parton physics.

    hep-phhep-latnucl-thInt.J.Mod.Phys.A(2019)·33 citations
  6. 06*

    On the triplet anti-triplet symmetry in 3-3-1 models

    Le Tho Hue🇻🇳 · Le Duc Ninh🇻🇳

    We present a detailed discussion of the triplet anti-triplet symmetry in 3-3-1 models. The full set of conditions to realize this symmetry is provided, which includes in particular the requirement that the two vacuum expectation values of the two scalar triplets responsible for making the W and Z bosons massive must be interchanged. We apply this new understanding to the calculation of processes that have a Z-Z' mixing.

    hep-phEPJC(2019)·7 citations
  7. 07*

    Lepton masses and mixings in a flavoured 3-3-1 model with type I and II seesaw mechanisms

    V. V. Vien🇻🇳 · H. N. Long🇻🇳 · A. E. Cárcamo Hernández🇨🇱

    We propose a renormalizable flavor model based on the gauge symmetry, consistent with the observed pattern of lepton masses and mixings. The small masses of the light active neutrinos are produced from an interplay of type I and type II seesaw mechanisms, which are induced by three heavy right-handed Majorana neutrinos and three scalar antisextets, respectively. Our model is only viable for the scenario of normal neutrino mass hierarchy, where the obtained physical observables of the lepton sector are highly consistent with the current neutrino oscillation experimental data. In addition, our model also predicts an effective Majorana neutrino mass parameter of eV, a Jarlskog invariant of the order of and a leptonic Dirac CP violating phase of , which is inside the experimentally allowed range.

    hep-phMod.Phys.Lett.A(2019)·27 citations
  8. 08*

    Warm inflation within a supersymmetric distributed mass model

    Mar Bastero-Gil🇪🇸 · Arjun Berera🇬🇧 · Rafael Hernández-Jiménez🇬🇧 · João G. Rosa🇵🇹

    We study the dynamics and observational predictions of warm inflation within a supersymmetric distributed mass model. This dissipative mechanism is well described by the interactions between the inflaton and a tower of chiral multiplets with a mass gap, such that different bosonic and fermionic fields become light as the inflaton scans the tower during inflation. We examine inflation for various mass distributions, analyzing in detail the dynamics and observational predictions. We show, in particular, that warm inflation can be consistently realized in this scenario for a broad parametric range and in excellent agreement with the Planck legacy data. Distributed mass models can be viewed as realizations of the landscape property of string theory, with the mass distributions coming from the underlying spectra of the theory, which themselves would be affected by the vacuum of the theory. We discuss the recently proposed swampland criteria for inflation models on the landscape and analyze the conditions under which they can be met within the distributed mass warm inflation scenario. We demonstrate mass distribution models with a range of consistency with the swampland criteria including cases in excellent consistency.

    hep-phastro-ph.COPRD(2019)·41 citations
  9. 09*

    Effective-range-expansion study of near threshold heavy-flavor resonances

    Rui Gao🇨🇳 · Zhi-Hui Guo🇨🇳 · Xian-Wei Kang🇨🇳 · J.A.Oller🇪🇸

    In this work we study the resonances near the thresholds of the open heavy-flavor hadrons using the effective-range-expansion method. The unitarity, analyticity and compositeness coefficient are also taken into account in our theoretical formalism. We consider the , , , and . The scattering lengths and effective ranges from the relevant elastic -wave scattering amplitudes are determined. Tentative discussions on the inner structures of the aforementioned resonances are given.

    hep-phAdv.High Energy Phys.(2019)·14 citations
  10. 10*

    Mapping the internal structure of hadrons through color and spin effects

    Tom van Daal🇳🇱

    Originally it was thought that the proton is not divisible into smaller particles. However, from collision experiments it follows that it consists of a 'soup' of countless 'colored' elementary particles such as quarks and gluons that are kept together by the strong nuclear force. The particles constituting the proton are also referred to as partons and their distributions are described by parton distribution functions (PDFs). As these functions cannot be calculated, they must be extracted from experiment. More knowledge on PDFs teaches us more about the inner workings of protons and enables us to more accurately describe collisions between protons at the Large Hadron Collider (LHC). In this thesis we have studied quantities that depend on various types of PDFs. We have investigated one particular PDF called the Boer-Mulders function that describes correlations between the spin and transverse momentum of quarks inside the proton. This function gives rise to a very specific asymmetry in the directions of produced particles. In contrast to earlier expectations, we have shown that this PDF does not suffer from quantum effects related to color entanglement. Furthermore, we have introduced various new gluon PDFs that contain interesting information on the behavior of gluons. As it turns out, the description of the gluon content of particles such as protons simplifies tremendously in certain collisions at very high energies. Finally, we have derived how certain asymmetries that have been observed in collisions between protons and lead nuclei at the LHC can be related to quantum correlations between gluons.

    hep-ph3 citations
  11. 11*

    Composite Higgs theory

    Florian Goertz🇩🇪

    I review the idea of realizing the Higgs as a composite pseudo-Nambu-Goldstone boson of a new strongly-interacting sector and collect major constraints on the parameter space of minimal models. Besides limits from electroweak precision tests, LHC searches for resonances and bounds due to Higgs-coupling modifications will be discussed in detail. Finally, the issue of light top partners in these models will be explored, including ways to avoid them which lead to interesting implications for flavor observables.

    hep-phhep-exPoS(2018)·22 citations
  12. 12*

    Jet quenching parameter in an expanding QCD plasma

    Edmond Iancu🇫🇷 · Pieter Taels🇮🇹 · Bin Wu🇨🇭

    We present a new definition of the jet quenching parameter in a weakly-coupled quark-gluon plasma undergoing boost-invariant longitudinal expansion. We propose a boost-invariant definition of , which is proportional to the broadening of the angular variables (the pseudo-rapidity) and (the azimuthal angle). We furthermore consider radiative corrections to and find potentially large corrections enhanced by a double logarithm like the case of a static medium. But unlike for the static medium, these corrections are now local in (proper) time.

    hep-phhep-exnucl-exnucl-thPoS(2018)·0 citations
  13. 13*

    A Wavelet Based Pile-Up Mitigation Method for the LHC Upgrade

    James Monk🇩🇰 · Craig Wiglesworth🇩🇰 · Peter Hansen🇩🇰

    Collision experiments at the Large Hadron Collider suffer from the problem of pile-up, which is the read-out of multiple simultaneous background proton-proton collisions per beam-crossing. We introduce a pile-up mitigation technique based on wavelet decomposition. Pile-up is treated as a form of white noise, which can be removed by filtering beam-crossing events in the wavelet domain. The particle-level performance of the method is evaluated using a sample of simulated proton-proton collision events that contain Z bosons decaying to a pair of neutrinos, overlaid with pile-up. In the wavelet representation, the pile-up noise level is found to grow with the square root of the number of background proton-proton collisions.

    hep-ph11 citations
  14. 14*

    Estimating QCD uncertainties in Monte Carlo event generators for gamma-ray dark matter searches

    Simone Amoroso🇩🇪 · Sascha Caron🇳🇱 · Adil Jueid🇨🇳 · Roberto Ruiz de Austri🇪🇸 · Peter Skands🇦🇺

    Motivated by the recent galactic center gamma-ray excess identified in the Fermi-LAT data, we perform a detailed study of QCD fragmentation uncertainties in the modeling of the energy spectra of gamma-rays from Dark-Matter (DM) annihilation. When Dark-Matter particles annihilate to coloured final states, either directly or via decays such as , photons are produced from a complex sequence of shower, hadronisation and hadron decays. In phenomenological studies, their energy spectra are typically computed using Monte Carlo event generators. These results have however intrinsic uncertainties due to the specific model used and the choice of model parameters, which are difficult to asses and which are typically neglected. We derive a new set of hadronisation parameters (tunes) for the \textsc{Pythia~8.2} Monte Carlo generator from a fit to LEP and SLD data at the peak. For the first time, we also derive a conservative set of uncertainties on the shower and hadronisation model parameters. Their impact on the gamma-ray energy spectra is evaluated and discussed for a range of DM masses and annihilation channels. The spectra and their uncertainties are also provided in tabulated form for future use. The fragmentation-parameter uncertainties may be useful for collider studies as well.

    hep-phastro-ph.COJCAP(2019)·55 citations
  15. 15*

    The Angular Power Spectrum of Heavy Ion Collisions

    Meera Machado🇩🇰 · Poul Henrik Damgaard🇩🇰 · Jens Jørgen Gaardhøje🇩🇰 · Christian Bourjau🇩🇰

    Particles produced in heavy ion collisions carry information about anisotropies present already in the early state of the system and play a crucial role in understanding the Quark Gluon Plasma and its evolution. We explore the angular power spectrum of particle multiplicities in such heavy ion collisions to extract fluctuations in particle multiplicities on the surface a sphere. Results are presented for Pb-Pb data at , extracted from the ALICE open data portal. We find that odd modes of the power spectrum display a power-law behavior with corresponding index , which is found to be close to unity. We also demonstrate that the angular power spectrum allows us to extract accurately the flow coefficients of non-central collisions.

    hep-phnucl-thPRC(2019)·5 citations
  16. 16*

    Non-minimal flavour violation in SUSY GUTs with smuon assisted dark matter

    Jordan Bernigaud🇫🇷 · Björn Herrmann🇫🇷 · Stephen F. King🇬🇧 · Samuel J. Rowley🇬🇧

    We study CP-conserving non-minimal flavour violation in inspired Supersymmetric Grand Unified Theories (GUTs), focussing on the regions of parameter space where dark matter is successfully accommodated due to a light right-handed smuon a few GeV heavier than the lightest neutralino. In this region of parameter space we find that some of the flavour-violating parameters are constrained by the requirement of the dark matter relic density, due to the delicate interplay between the smuon and neutralino masses. By scanning over GUT scale flavour violating parameters, constrained by low-energy quark and lepton flavour violating observables, we find a striking difference in the results in which individual parameters are varied to those where multiple parameters are varied simultaneously, where the latter relaxes the constraints on flavour violating parameters due to cancellations and/or correlations. Since charged lepton-flavour violation provides the strongest constraints within a GUT framework, due to relations between quark and lepton flavour violation, we examine in detail a prominent correlation between some of the flavour violating parameters at the GUT scale consistent with the stringent lepton flavour violating process . We also examine the relation between GUT scale and low scale flavour violating parameters, for both quarks and leptons, and show how the usual expectations may be violated due to the correlations when multiple parameters are varied simultaneously.

    hep-phJHEP(2019)·9 citations
  17. 17*

    determination from inclusive decays: an alternative method

    Matteo Fael🇩🇪 · Thomas Mannel🇩🇪 · K. Keri Vos🇩🇪

    The determination of relies on the Heavy-Quark Expansion and the extraction of the non-perturbative matrix elements from inclusive decays. The proliferation of these matrix elements complicates their extraction at and higher, thereby limiting the extraction. Reparametrization invariance links different operators in the Heavy-Quark expansion thus reducing the number of independent operators at to eight for the total rate. We show that this reduction also holds for spectral moments as long as they are defined by reparametrization invariant weight-functions. This is valid in particular for the leptonic invariant mass spectrum (), i.e. the differential rate and its moments. Currently, is determined by fitting the energy and hadronic mass moments, which do not manifest this parameter reduction and depend on the full set of 13 matrix elements up to . In light of this, we propose an experimental analysis of the moments to open the possibility of a model-independent extraction from semileptonic decays including the terms in a fully data-driven way.

    hep-phhep-exJHEP(2019)·69 citations
  18. 18*

    Jet substructure in high-energy hadron collisions

    Felix Ringer🇺🇸

    In the past years significant progress has been made toward achieving a quantitative understanding of jets and their substructure in high-energy proton-proton collisions from first principles in QCD. Precise measurements have become available from the experimental collaborations at the LHC and RHIC allowing a direct comparison of theoretical calculations and data. These developments make it possible to use jet substructure observables as precision probes in heavy-ion collisions. The radiation pattern inside jets contains valuable information about the hot and dense QCD medium which can be investigated using jet substructure techniques. By studying the soft sensitivity of the different observables it is possible to obtain important insights into the interaction of hard probes with the quark gluon plasma.

    hep-phhep-exnucl-exnucl-thPoS(2018)·0 citations
  19. 19*

    A transverse momentum dependent framework for back-to-back photon+jet production

    Maarten G.A. Buffing🇩🇪 · Zhong-Bo Kang🇺🇸 · Kyle Lee🇺🇸 · Xiaohui Liu🇨🇳

    We propose the as a new process for studying the Transverse Momentum Dependent Parton Distribution Functions (TMDs). To do so, we developed a novel framework for the jet- imbalance in using Soft Collinear Effective Theory. The new framework opens up many new insights to the TMDs which the current TMD studies confined to the Drell-Yan and semi-inclusive deep inelastic scattering processes cannot achieve. The established formalism provides, for the first time, a first principle prediction of the jet- imbalance in collisions and therefore a first direct probe of the factorization breaking effects when compared with the future experimental data. If the factorization breaking effects are found small, the process will offer the unique sensitivities to both the polarized and un-polarized quark/gluon TMDs. We demonstrate the predictive power of the framework by calculating each component in the formalism to the next-to-leading order accuracy and by realizing the next-to-leading-logarithmic evolution. We provide the first numerical estimates for this process, for both the unpolarized cross section and the Sivers asymmetry.

    hep-phnucl-th52 citations
  20. 20*

    Direct Detection of Bound States of Asymmetric Dark Matter

    Ahmet Coskuner🇺🇸 · Dorota M. Grabowska🇺🇸 · Simon Knapen🇺🇸 · Kathryn M. Zurek🇺🇸

    We study the reach of direct detection experiments for large bound states (containing or more dark nucleons) of Asymmetric Dark Matter. We consider ordinary nuclear recoils, excitation of collective modes (phonons), and electronic excitations, paying careful attention to the impact of the energy threshold of the experiment. Large exposure experiments with keV energy thresholds provide the best (future) limits when the Dark Matter is small enough to be treated as a point particle, but rapidly lose sensitivity for more extended dark bound states, or when the mediator is light. In those cases, low threshold, low exposure experiments (such as with a superfluid helium, polar material or superconducting target) are often more sensitive due to coherent enhancement over the dark nucleons. We also discuss indirect constraints on composite Asymmetric Dark Matter arising from self-interaction, formation history and the properties of the composite states themselves.

    hep-phPRD(2019)·70 citations
  21. 21*

    Consistent Searches for SMEFT Effects in Non-Resonant Dilepton Events

    Stefan Alte🇩🇪 · Matthias König🇨🇭 · William Shepherd🇩🇪

    Employing the framework of the Standard Model Effective Field Theory, we perform a detailed reinterpretation of measurements of the Weinberg angle in dilepton production as a search for new-physics effects. We truncate our signal prediction at order , where denotes the new-physics mass scale, and introduce a theory error to account for unknown contributions of order . Two linear combinations of four-fermion operators with distinct angular behavior contribute to dilepton production with growing impact at high energies. We define suitable angular observables and derive bounds on those two linear combinations using data from the Tevatron and the LHC. We find that the current data is able to constrain interesting regions of parameter space, with important contributions at lower cutoff scales from the Tevatron, and that the future LHC data will eventually be able to simultaneously constrain both independent linear combinations which contribute to dilepton production.

    hep-phhep-exJHEP(2019)·28 citations
  22. 22*

    Cosmological beam dump: constraints on dark scalars mixed with the Higgs boson

    Anthony Fradette🇨🇦 · Maxim Pospelov🇨🇦 · Josef Pradler🇦🇹 · Adam Ritz🇨🇦

    Precision cosmology provides a sensitive probe of extremely weakly coupled states due to thermal freeze-in production, with subsequent decays impacting physics during well-tested cosmological epochs. We explore the cosmological implications of the freeze-in production of a new scalar via the super-renormalizable Higgs portal. If the mass of is at or below the electroweak scale, peak freeze-in production occurs during the electroweak epoch. We improve the calculation of the freeze-in abundance by including all relevant QCD and electroweak production channels. The resulting abundance and subsequent decay of is constrained by a combination of X-ray data, cosmic microwave background anisotropies and spectral distortions, , and the consistency of BBN with observations. These probes constrain technically natural couplings for such scalars from keV all the way to GeV. The ensuing constraints are similar in spirit to typical beam bump limits, but extend to much smaller couplings, down to mixing angles as small as , and to masses all the way to the electroweak scale.

    hep-phastro-ph.COPRD(2019)·71 citations
  23. 23*

    The Gauge-Higgs Legacy of the LHC Run II

    Anke Biekötter🇩🇪 · Tyler Corbett🇩🇰 · Tilman Plehn🇩🇪

    We present a global analysis of the Higgs and electroweak sector based on LHC Run II and electroweak precision observables. We show which measurements provide the leading constraints on Higgs-related operators, and how the achieved LHC precision makes it necessary to combine rate measurements with electroweak precision observables. The SFitter framework allows us to include kinematic distributions beyond pre-defined ATLAS and CMS observables, independently study correlations, and avoid Gaussian assumptions for theory uncertainties. These Run II results are a step towards a precision physics program at the LHC, interpreted in terms of effective operators.

    hep-phSciPost Phys.(2019)·145 citations
  24. 24*

    Polarization fraction measurement in same-sign WW scattering using deep learning

    Junho Lee🇨🇳 · Nicolas Chanon🇫🇷 · Andrew Levin🇨🇳 · Jing Li🇨🇳 · Meng Lu🇨🇳 · Qiang Li🇨🇳 · Yajun Mao🇨🇳

    Studying the longitudinally polarized fraction of scattering at the LHC is crucial to examine the unitarization mechanism of the vector boson scattering amplitude through Higgs and possible new physics. We apply here for the first time a Deep Neural Network classification to extract the longitudinal fraction. Based on fast simulation implemented with the Delphes framework, significant improvement from a deep neural network is found to be achievable and robust over all dijet mass region. A conservative estimation shows that a high significance of four standard deviations can be reached with the High-Luminosity LHC designed luminosity of 3000

    hep-phhep-exPRD(2019)·27 citations
  25. 25*

    Searching for light WIMPS via their interaction with electrons

    J. D. Vergados (Physics Department, University of Ioannina, Ioannina, Greece)🇬🇷

    In the present work we examine the possibility of detecting light dark matter particles (WIMP) utilizing their possible interactions with the electrons. Employing reasonable theoretical models we evaluate the expected event rates in the following cases: i) For WIMPs in the meV region treating electrons as free and utilizing calorimetric detectors at low temperatures. ii) Detecting recoiling electrons with energy in the eV region ejected out of an atom in the case of WIMPs with a mass more than an order of magnitude heavier than the electron. iii) By observing atomic excitations in the range of 1 meV to 10 eV excitation energy induced by the electron spin interaction in a magnetic field.

    hep-ph0 citations
  26. 26*

    One-loop neutrino mass model with multiplet fields

    Takaaki Nomura🇰🇷 · Hiroshi Okada🇰🇷

    We propose a one-loop neutrino mass model with several multiplet fermions and scalar fields in which the inert feature of a scalar to realize the one-loop neutrino mass can be achieved by the cancellation among Higgs couplings thanks to non-trivial terms in the Higgs potential and to present it in a simpler way. Then we discuss our typical cut-off scale by computing renormalization group equation for gauge coupling, lepton flavor violations, muon anomalous magnetic moment, possibility of dark matter candidate, neutrino mass matrix satisfying the neutrino oscillation data. Finally, we search for our allowed parameter region to satisfy all the constraints, and discuss a possibility of detecting new charged particles at the large hadron collider.

    hep-phNPB(2019)·1 citation
  27. 27*

    Chiral QCD phase in equilibrium with Hadron Gas and the location of the critical point

    N. G. Antoniou🇬🇷 · F. K. Diakonos🇬🇷 · A. S. Kapoyannis🇬🇷

    We develop a description of the equation of state of QCD matter with restored chiral symmetry, which is in thermal and chemical equilibrium with the hadronic phase. The hadron gas is described with thermodynamically consistent volume corrections. The chiral phase is composed of a set of few quark condensates, each of which corresponds to a family of hadrons with specific quark content. On the boundary between the two phases we apply the requirement of conservation of particle numbers per family. We use lattice calculations for temperatures below the transition curve to determine hadronic volumes. We find that the pion system plays decisive role in the shift of the transition from higher order (crossover) to first order. For four volume models we calculate the location of the critical point as function of critical temperature at vanishing baryon density. Particularly, if we additionally impose the equality between the densities of quarks contained in mesons and baryons, we find a critical point residing in the interval of baryon chemical potential 233-267 MeV and of temperature 153-158 MeV.

    ↳ nucl-thhep-ph0 citations
  28. 28*

    Structure constants of twist-two light-ray operators in the triple Regge limit

    Ian Balitsky🇺🇸

    The structure constants of twist-two operators with spin in the BFKL limit but are determined from the calculation of the three-point correlator of twist-two light-ray operators in the triple Regge limit. It is well known that the anomalous dimensions of twist-two operators in this limit are determined by the BFKL intercept. Similarly, the obtained structure constants are determined by an analytic function of three BFKL intercepts.

    ↳ hep-thhep-phJHEP(2019)·9 citations
  29. 29*

    Spectroscopy instead of scattering: particle experimentation in AdS spacetime

    Oleg Evnin🇹🇭

    Particle experiments are difficult at weak coupling because interactions are rare and a huge number of collision attempts are needed to attain significant precision. One often hears that "one Higgs boson is produced in a billion of collisions at LHC." In this essay, we fantasize about possible advantages afforded in this regard by performing experiments in anti-de Sitter (AdS) spacetime instead of a usual collider in a nearly-flat spacetime. Being a perfectly resonant cavity, the AdS spacetime enhances all nonlinear interactions, which therefore produce effects of order one no matter how small the couplings are, provided that one waits long enough. These effects are encoded in spectroscopic data, namely, the fine splittings of the energy levels which would have been highly degenerate in AdS if no interactions were present. Over long times, such energy shifts let different components of wavefunctions drift completely out-of-phase, producing large effects for arbitrarily small interactions.

    ↳ hep-thhep-pheConf C180906 (2018)·8 citations
  30. 30*

    Viscosity vs. Vorticity in the Quark-Gluon Plasma

    Brett McInnes🇸🇬

    We show that, in a holographic or gauge-gravity approach to the study of the Quark-Gluon Plasma, the specific entropy density of the plasma produced in a peripheral heavy-ion collision can be strongly suppressed relative to its value for central collisions at the same impact energy; this is connected with the strong vorticity fields which are now known to characterize the peripheral case. This implies, within the holographic model, that the shear viscosity of `peripheral plasmas' may be considerably lower than that of the corresponding `central plasmas', with potentially important consequences for other aspects of QGP physics, such as the centrality dependence of jet quenching.

    ↳ hep-thgr-qchep-phNPB(2020)·9 citations
  31. 31*

    The Sterile-Active Neutrino Flavor Model: the Imprint of Dark Matter on the Electron Neutrino Spectra

    Ilídio Lopes🇵🇹

    Contact interactions between sterile neutrinos and dark matter particles in a hidden sector have been suggested as a good solution to simultaneously resolve the dark matter problem and anomalies in neutrino experiments. In this non-standard particle physics model, sterile and active neutrinos change their through vacuum oscillations and matter (or Mikheyev--Smirnov--Wolfenstein) oscillations, in which the latter mechanism of flavor oscillation depends strongly on the concentration of dark matter in the Sun's core. We found that a large concentration of dark matter in the Sun's interior changes substantially the shape of and electron neutrino spectra, but has an insignificant impact on the other neutrino spectra (i.e., , , and , and ). The strength of the interaction of the dark matter particles with neutrinos depends on an effective coupling constant, , which is an analog of the Fermi constant for the hidden sector. By using the latest solar neutrino flux, we found that must be smaller than for this particle physics model to be in agreement with the data.

    ↳ astro-ph.COhep-phApJ(2018)·2 citations
  32. 32*

    Phenomenology of soft QCD: the role of minimum-bias measurements

    Jan Fiete Grosse-Oetringhaus🇨🇭

    This chapter summarizes minimum-bias measurements at the Large Hadron Collider. In particular, the pseudorapidity density, the transverse-momentum spectra, the multiplicity distribution, the correlation of average transverse momentum and the multiplicity, and a measurement of minijets are presented. In addition to an overview of the results obtained to date at the LHC, the experimental challenges of defining particle and event sample and correcting to this sample are discussed.

    ↳ hep-exhep-phAdv.Ser.Direct.High Energy Phys.(2018)·2 citations
  33. 33*

    The future SIDIS measurement on transversely polarized deuterons by the COMPASS Collaboration

    F. Bradamante (on behalf of the COMPASS Collaboration)🇮🇹

    Since 2005, measurements of Collins and Sivers asymmetries from the HERMES and COMPASS experiments have allowed to assess that the transversity and the Sivers PDFs are different from zero and measurable in semi-inclusive DIS on transversely polarised targets. Most of the data were collected on proton targets, only small event samples were collected in the early phase of the COMPASS experiment on a deuteron (LiD) target and more recently at JLab, on He, so that the -quark and the sea-quarks PDFs are much more poorly known than the -quark PDFs. This constitutes an important limitation to the knowledge of the transverse spin structure of the nucleon. For this reason the COMPASS Collaboration has proposed to measure semi-inclusive DIS on transversely polarised deuterons with good accuracy, comparable with that of the existing transverse spin asymmetry data on protons. The proposal has been accepted by CERN and the experiment will run in 2021, as soon as the Long Shut-down 2 is over, providing measurements which will stay unique for many years to come. Projections will be given for the extraction of the transversity PDFs, and for the evaluation of the isovector tensor charge of the nucleon.

    ↳ hep-exhep-phPoS(2018)·10 citations
  34. 34*

    Time-crystal ground state and production of gravitational waves from QCD phase transition

    Andrea Addazi🇨🇳 · Antonino Marciano🇨🇳 · Roman Pasechnik🇸🇪

    We propose a novel mechanism for the production of gravitational waves in the early Universe that originates from the relaxation processes induced by the QCD phase transition. While the energy density of the quark-gluon mean-field is monotonously decaying in real time, its pressure undergoes a series of violent oscillations at the characteristic QCD time scales that generates a primordial multi-peaked gravitational waves' signal in the radio frequencies' domain. The signal as an echo of the QCD phase transition, and is accessible by the FAST and SKA telescopes.

    ↳ hep-thgr-qchep-phCPC(2019)·12 citations
  35. 35*

    Hyperons in thermal QCD: A lattice view

    Gert Aarts🇬🇧 · Chris Allton🇬🇧 · Davide De Boni🇬🇧 · Benjamin Jäger🇩🇰

    The hadron resonance gas (HRG) is a widely used description of matter under extreme conditions, e.g. in the context of heavy-ion phenomenology. Commonly used implementations of the HRG employ vacuum hadron masses throughout the hadronic phase and hence do not include possible in-medium effects. Here we investigate this issue, using nonperturbative lattice simulations employing the FASTSUM anisotropic Nf=2+1 ensembles. We study the fate of octet and decuplet baryons as the temperature increases, focussing in particular on the positive- and negative-parity groundstates. While the positive-parity groundstate masses are indeed seen to be temperature independent, within the error, a strong temperature dependence is observed in the negative-parity channels. We give a simple parametrisation of this and formulate an in-medium HRG, which is particularly effective for hyperons. Parity doubling is seen to emerge in the deconfined phase at the level of correlators, with a noticeable effect of the heavier s quark. Channel dependence of this transition is analysed.

    ↳ hep-lathep-phnucl-thPRD(2019)·84 citations
  36. 36*

    HFLAV input to the update of the European Strategy for Particle Physics

    Y. Amhis🇫🇷 · Sw. Banerjee🇺🇸 · E. Ben-Haim🇫🇷 · M. Bona🇬🇧 · A. Bozek🇵🇱 · C. Bozzi🇮🇹 · J. Brodzicka🇵🇱 · M. Chrzaszcz🇨🇭 · J. Dingfelder🇩🇪 · U. Egede🇬🇧 · M. Gersabeck🇬🇧 · T. Gershon🇬🇧 and 26 other authors

    The Heavy Flavor Averaging Group provides with this document input to the European Strategy for Particle Physics. Research in heavy-flavor physics is an essential component of the particle-physics program, both within and beyond the Standard Model. To fully realize the potential of the field, we believe the strategy should include strong support for the ongoing experimental and theoretical heavy-flavor research, future upgrades of existing facilities, and significant heavy-flavor capabilities at future colliders, including dedicated experiments.

    ↳ hep-exhep-ph2 citations
  37. 37*

    Jet structure in integrated EPOS3-HQ approach

    Iurii Karpenko🇫🇷 · Martin Rohrmoser🇵🇱 · Pol Gossiaux🇫🇷 · Joerg Aichelin🇫🇷 · Klaus Werner🇫🇷

    We report on the first results for jet observables from a time-like parton cascade integrated with hydrodynamic evolution within the EPOS3-HQ framework. The hard (jet) partons are produced along with soft partons in the initial state EPOS approach. The soft partons, represented by strings, melt into a thermalized medium which is described by a 3 dimensional event-by-event viscous hydrodynamic approach. The jet partons then propagate in the hydrodynamically expanding medium. The total jet energy gets progressively `degraded' when the partons reaching a thermal energy scale are melted into the hydrodynamic medium via the source terms. The full evolution proceeds in a parallel mode, without separating the thermalized and jet parts. We demonstrate how the transverse expansion of the medium affects the jet structure, and how the medium itself is affected by the jet recoil.

    ↳ nucl-thhep-phnucl-exPoS(2018)·1 citation
  38. 38*

    Interpretation of the unpolarized azimuthal asymmetries in SIDIS

    Albi Kerbizi (on behalf of the COMPASS Collaboration)🇮🇹

    The measurement of azimuthal modulations in hadron leptoproduction on unpolarized nucleons allows to get information on the intrinsic transverse momentum of quarks in a nucleon through both the Cahn effect and the Boer-Mulders function. We have compared the azimuthal asymmetries in the cross section of muons scattered off an unpolarised deuteron target as measured by COMPASS with a Monte Carlo program, based on the model of quark anti-quark pair production at string breaking, which accounts for the Cahn effect. Large differences have been observed between data and Monte Carlo, in particular at large values of the fraction of the longitudinal momentum of the fragmenting quark carried by the produced hadron. We found out that most of these differences are due to pions from exclusive vector mesons contaminating the SIDIS sample, which also exhibit large azimuthal modulations. Using the measurements of the exclusive reaction we had done in 2006, we can reproduce reasonably well the observed differences. Subtracting the contribution of hadrons produced in the decay of exclusive vector mesons from the SIDIS unpolarised azimuthal asymmetries is therefore a prerequisite condition for extracting and the Boer-Mulders function.

    ↳ hep-exhep-phPoS(2018)·4 citations
  39. 39*

    Swampland Distance Conjecture, Inflation and -attractors

    Marco Scalisi🇧🇪 · Irene Valenzuela🇺🇸

    The Swampland Distance Conjecture (SDC) constraints the dynamics emerging at infinite distances in field space of any effective field theory consistent with quantum gravity. It provides a relation between the cut-off in energies and the field range which, as we show, in the context of inflation it yields a universal upper bound on the inflaton excursion in terms of the tensor-to-scalar ratio, measured at typical CMB scales. In this note, we investigate the interplay between the SDC and the emergent inflationary physics around infinite distances singularities in string theory, with a special look at its significance for the -attractor scenario of inflation. We show that the conjecture itself suggests that inflation may arise as an infinite distance phenomenon with the asymptotic kinetic structure typical of -attractors. Furthermore, we argue that a proper string realisation of these cosmological models in Calabi-Yau manifolds should occur around infinite field distance singularities. However, such constructions typically imply that inflation should not take place in the limit where the inflaton kinetic term develops a pole but rather in the opposite regime. Finally, we study the constraints that the SDC poses on -attractors and show that they still leave considerable room for compatibility with observations.

    ↳ hep-thastro-ph.COhep-phJHEP(2019)·128 citations
  40. 40*

    Using a Primordial Gravitational Wave Background to Illuminate New Physics

    Robert R. Caldwell🇺🇸 · Tristan L. Smith🇺🇸 · Devin G. E. Walker🇺🇸

    A primordial spectrum of gravitational waves serves as a backlight to the relativistic degrees of freedom of the cosmological fluid. Any change in the particle physics content, due to a change of phase or freeze-out of a species, will leave a characteristic imprint on an otherwise featureless primordial spectrum of gravitational waves and indicate its early-Universe provenance. We show that a gravitational wave detector such as the Laser Interferometer Space Antenna would be sensitive to physics near 100 TeV in the presence of a sufficiently strong primordial spectrum. Such a detection could complement searches at newly proposed 100 km circumference accelerators such as the Future Circular Collider at CERN and the Super Proton-Proton Collider in China, thereby providing insight into a host of beyond Standard Model issues, including the hierarchy problem, dark matter, and baryogenesis.

    ↳ astro-ph.COgr-qchep-phPRD(2019)·67 citations
  41. 41*

    Probing Dark Matter Using Precision Measurements of Stellar Accelerations

    Aakash Ravi🇺🇸 · Nicholas Langellier🇺🇸 · David F. Phillips🇺🇸 · Malte Buschmann🇺🇸 · Benjamin R. Safdi🇺🇸 · Ronald L. Walsworth🇺🇸

    Dark matter comprises the bulk of the matter in the universe but its particle nature and cosmological origin remain mysterious. Knowledge of the dark matter density distribution in the Milky Way Galaxy is crucial to both our understanding of the standard cosmological model and for grounding direct and indirect searches for the particles comprising dark matter. Current measurements of Galactic dark matter content rely on model assumptions to infer the forces acting upon stars from the distribution of observed velocities. Here, we propose to apply the precision radial velocity method, optimized in recent years for exoplanet astronomy, to measure the change in the velocity of stars over time, thereby providing a direct probe of the local gravitational potential in the Galaxy. Using numerical simulations, we develop a realistic strategy to observe the differential accelerations of stars in our Galactic neighborhood with next-generation telescopes, at the level of cm/s. Our simulations show that detecting accelerations at this level with an ensemble of stars requires the effect of stellar noise on radial velocity measurements to be reduced to cm/s. The measured stellar accelerations may then be used to extract the local dark matter density and morphological parameters of the density profile.

    ↳ astro-ph.GAastro-ph.COhep-phPRL(2019)·27 citations
  42. 42*

    Stellar Accelerations and the Galactic Gravitational Field

    Hamish Silverwood🇪🇸 · Richard Easther🇳🇿

    Typical stars in the Milky Way galaxy have velocities of hundreds of kilometres per second and experience gravitational accelerations of m s, resulting in velocity changes of a few centimetres per second over a decade. Measurements of these accelerations would permit direct tests of the applicability of Newtonian dynamics on kiloparsec length scales and could reveal significant small scale inhomogeneities within the galaxy, as well increasing the sensitivity of measurements of the overall mass distribution of the galaxy. Noting that a reasonable extrapolation of progress in exoplanet hunting spectrographs suggests that centimetre per second level precision will be attainable in the coming decade(s), we explore the possibilities such measurements would create. We consider possible confounding effects, including apparent accelerations induced by stellar motion and reflex velocities from planetary systems, along with possible strategies for their mitigation. If these issues can be satisfactorily addressed it will be possible to use high precision measurements of changing stellar velocities to perform a "blind search" for dark matter, make direct tests of theories of non-Newtonian gravitational dynamics, detect local inhomogeneities in the dark matter density, and greatly improve measurements of the overall properties of the galaxy.

    ↳ astro-ph.GAastro-ph.EPhep-phPubl.Astron.Soc.Austral.(2019)·35 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.