PaperPanorama

HEP Phenomenology·hep-ph

Wed·Nov 23, 2022

31 papers20 primary·11 cross-listed·reconstructed*

  1. 01*

    Direct Detection of Electroweak Dark Matter

    Ramtin Amintaheri🇦🇺

    TeV-scale dark matter is well motivated by notions of naturalness as the new physics threshold is expected to emerge in the TeV regime. We extend the Standard Model by adding an arbitrary SU(2) dark matter multiplet in non-chiral representation. The pseudo-real representations can be viable DM candidates providing that one includes a higher dimensional mass-splitting operator, which avoids the tree-level inelastic scattering through Z-boson exchange. These effective operators give rise to sizable contributions from Higgs mediated dark matter interactions with quarks and gluons. A linear combination of the effective couplings named is identified as the critical parameter in determining the magnitude of the cross-section. When is smaller than the critical value, the theory behaves similar to the known renormalisable model, and the scattering rate stays below the current experimental reach. Nevertheless, above the criticality, the contribution from the higher dimensional operators significantly changes the phenomenology. The scattering amplitude of pseudo-real models will be coherently enhanced, so that it would be possible for next generation large-exposure experiments to fully probe these multiplets. We studied the parameter space of the theory, taking into account both indirect astrophysical and direct search constraints. It is inferred that multi-TeV mass scale remains a viable region, quite promising for forthcoming dark matter experiments.

    hep-phEPJC(2023)·2 citations
  2. 02*

    Physics implications of a combined analysis of COHERENT CsI and LAr data

    V. De Romeri🇪🇸 · O. G. Miranda🇲🇽 · D. K. Papoulias🇬🇷 · G. Sanchez Garcia🇲🇽 · M. Tórtola🇪🇸 · J. W. F. Valle🇪🇸

    The observation of coherent elastic neutrino nucleus scattering has opened the window to many physics opportunities. This process has been measured by the COHERENT Collaboration using two different targets, first CsI and then argon. Recently, the COHERENT Collaboration has updated the CsI data analysis with a higher statistics and an improved understanding of systematics. Here we perform a detailed statistical analysis of the full CsI data and combine it with the previous argon result. We discuss a vast array of implications, from tests of the Standard Model to new physics probes. In our analyses we take into account experimental uncertainties associated to the efficiency as well as the timing distribution of neutrino fluxes, making our results rather robust. In particular, we update previous measurements of the weak mixing angle and the neutron root mean square charge radius for CsI and argon. We also update the constraints on new physics scenarios including neutrino nonstandard interactions and the most general case of neutrino generalized interactions, as well as the possibility of light mediators. Finally, constraints on neutrino electromagnetic properties are also examined, including the conversion to sterile neutrino states. In many cases, the inclusion of the recent CsI data leads to a dramatic improvement of bounds.

    hep-phJHEP(2023)·111 citations
  3. 03*

    Going in quest of potential tetraquark interpretations for the newly observed states in light of the diquark-antidiquark scenarios

    Wen-Chao Dong🇨🇳 · Zhi-Gang Wang🇨🇳

    Stimulated by the recent experimental progress on the states, the fully charmed tetraquark spectroscopy is systemically investigated by dint of the Godfrey-Isgur relativized diquark model, the modified Godfrey-Isgur relativized diquark model with the color screening effects, and the nonrelativistic diquark model. The theoretical results of the diquark-antidiquark scenarios propose to interpret the , , , and structures as the candidates of the -wave, -wave, -wave, and -wave fully charmed tetraquark states, respectively. On account of the deficiency of sufficient experimental information, e.g., the parities of the newly observed states, there are uncertainties about the assignments of the , , and states. It is demonstrated that the further experimental survey on the states, implemented by the LHCb, ATLAS, CMS, and other collaborations, ought to be continued in the future.

    hep-phPRD(2023)·44 citations
  4. 04*

    Electroweak Monopole-antimonopole Pair in the Standard Model

    Dan Zhu🇲🇾 · Khai-Ming Wong🇲🇾 · Guo-Quan Wong🇲🇾

    We present the first numerical solution that corresponds to a pair of Cho-Maison monopole and antimonopole (MAP) in the SU(2)U(1) Weinberg-Salam (WS) theory. The monopoles are finitely separated, while each pole carries magnetic charge . The positive pole is situated in the upper hemisphere, whereas the negative pole is in the lower hemisphere. The Cho-Maison MAP was investigated for a range of Weinberg angle, , and Higgs self-coupling, . Magnetic dipole moment () and pole separation () of the numerical solutions are calculated and analyzed. Total energy of the system, however, is infinite due to point singularities at the locations of monopoles.

    hep-phhep-thCommun.Theor.Phys.(2024)·5 citations
  5. 05*

    Pseudoscalar and Scalar Meson Photoproduction Interpreted by Regge Phenomenology

    Igor I. Strakovsky (GWU)🇺🇸 · William J. Briscoe (GWU)🇺🇸 · Olga Cortes Becerra (GWU)🇺🇸 · Michael Dugger (ASU)🇺🇸 · Gary Goldstein (Tufts U.)🇺🇸 · Victor L. Kashevarov (Mainz U.)🇩🇪 · Axel Schmidt (GWU)🇺🇸 · Peter Solazzo (GWU)🇺🇸 · Byung-Geel Yu (Korea Aerospace U.)🇰🇷

    We have evaluated pseudoscalar and scalar neutral pion photoproduction in and above the resonance region and within Regge phenomenology. Our fit, including GlueX pseudoscalar photoproduction data, shows that previous SLAC measurements for above are at variance with SLAC data with more recent measurements made by GlueX in vicinity of . The Regge model predicts that the beam polarization asymmetry of the scalar meson is opposite to that of pseudoscalar meson photoproduction, however, the cross sections are similar. While the vector natural parity meson exchange is dominant in both cases, the contribution of the pseudovector unnatural parity meson exchange is very small. Using Regge phenomenology, we predicted high energy behavior for double polarized observables , , , and for the reactions and .

    hep-phhep-exnucl-exnucl-thPRC(2023)·3 citations
  6. 06*

    Loop enhancement of direct detection cross section in a fermionic dark matter model

    Khadije Rahi Maleki🇮🇷 · Karim Ghorbani🇮🇷

    We investigate the effect of one loop quantum corrections on the elastic scattering of dark matter off the nucleon in a fermionic dark matter model. The model introduces two new singlet fermions and a singlet scalar. The fermions communicate with the SM particles through a Higgs portal. It is found that some viable regions in the parameter space respecting the bounds from the observed relic density, the Higgs invisible decay width, and direct detection experiment, will be shrunk significantly when one loop effects are taken into account. The regions already resided below the neutrino floor, partly may come into regions which are testable by the current or future direct detection experiments. In addition, some regions being viable at tree level, may be excluded when quantum corrections are included.

    hep-phhep-exEPJC(2023)·5 citations
  7. 07*

    Effective Theory for Baryogenesis with a Majorana Fermion Pair Coupled to Quarks

    Shrihari Gopalakrishna🇮🇳 · Rakesh Tibrewala🇮🇳

    With a goal toward explaining the observed baryon asymmetry of the Universe, we extend the standard model (SM) by adding a vector-vector dimension-six effective operator coupling a new Dirac fermion , uncharged under the SM gauge symmetries but charged under baryon number, to a quark-like up-type fermion and two identical down-type fermions. We introduce baryon number violation by adding Majorana masses to , which splits the Dirac fermion into two Majorana fermions with unequal masses. We speculate on the origin of the effective operator, the Majorana mass, and the new physics sector connection to the SM, by considering some ultraviolet completion examples. In addition to the baryon number violation, we show that and invariances can be violated in the theory, and the interference between tree and loop amplitudes with on-shell intermediate states can lead to a baryon asymmetry in decay and scattering processes. We write down the Boltzmann equation for baryon number in the early Universe incorporating the decay and scattering baryon asymmetries. We provide numerical estimates for the baryon asymmetry generated, and for the neutron-antineutron oscillation rate.

    hep-phPRD(2023)·2 citations
  8. 08*

    Molecular state interpretation of charmed baryons in the quark model

    Ye Yan🇨🇳 · Xiaohuang Hu🇨🇳 · Yuheng Wu🇨🇳 · Hongxia Huang🇨🇳 · Jialun Ping🇨🇳 · Youchang Yang🇨🇳

    Stimulated by the observation of by the Belle Collaboration, the -wave pentaquark systems with = 0, = are investigated in the framework of quark delocalization color screening model(QDCSM). The real-scaling method is utilized to check the bound states and the genuine resonance states. The root mean square of cluster spacing is also calculated to study the structure of the states and estimate if the state is resonance state or not. The numerical results show that cannot be interpreted as a molecular state, and cannot be explained as the molecular state with . can be interpreted as the molecular state with and the main component is . can be interpreted as the molecular state with and the main component is . is likely to be interpreted as a molecular state with , and the main component is . Besides, two new molecular states are predicted, one is the resonance state with the mass around 3140 MeV, another one is the with the mass of 3188.3 MeV.

    hep-phnucl-thEPJC(2023)·19 citations
  9. 09*

    Axion Couplings in Gauged Extensions of the Standard Model

    Alexey Kivel🇩🇪 · Julien Laux🇩🇪 · Felix Yu🇩🇪

    We explore the effective theory of an axion in a gauged baryon number symmetry extension of the Standard Model (SM), where the axion is realized from a Dine-Fischler-Srednicki-Zhitnitsky (DFSZ) model construction. Integrating out the anomalons realizes a pattern of effective Wilson coefficients reflecting the factorization between the anomalous Peccei-Quinn and gauged baryon number symmetries. We construct and analyze the chiral transformation invariance of the axion effective theory, accounting for possible flavor-violating axion couplings. We calculate and study the unique phenomenology of the axion and boson, and we present the current collider limits on these particles in the , , and planes.

    hep-phJHEP(2023)·5 citations
  10. 10*

    Charmed hadron production in high-energy nuclear collisions

    Andrea Beraudo🇮🇹 · Arturo De Pace🇮🇹 · Marco Monteno🇮🇹 · Marzia Nardi🇮🇹 · Daniel Pablos🇮🇹 · Francesco Prino🇮🇹

    We present a new model for the description of heavy-flavor hadronization in high-energy nuclear (and possibly hadronic) collisions, where the process takes place not in the vacuum, but in the presence of other color charges. We explore its effect on the charmed hadron yields and kinematic distributions once the latter is applied at the end of transport calculations used to simulate the propagation of heavy quarks in the deconfined fireball produced in nuclear collisions. The model is based on the formation of color-singlet clusters through the recombination of charm quarks with light antiquarks or diquarks from the same fluid cell. This local mechanism of color neutralization leads to a strong space-momentum correlation, which provides a substantial enhancement of charmed baryon production -- with respect to expectations based on collisions -- and of the collective flow of all charmed hadrons. We also discuss the similarities between our model and recently developed mechanisms implemented in QCD event generators to simulate medium corrections to hadronization in the presence of other nearby color charges.

    hep-phnucl-exnucl-th0 citations
  11. 11*

    Future Perspective for Higgs Physics

    S. Heinemeyer🇪🇸

    Future perspectives for Higgs physics are outlined. First it is shown that the discovered Higgs boson cannot be the Standard Model (SM) Higgs boson, motivating the investigations of Higgs sectors beyond the SM (BSM). The secure future, the HL-LHC, and the agreed upon future, an collider, are briefly discussed. The importance of theory calculations for the full exploitation of the (anticipated) experimental data is emphasized. Finally, the complementarity of collider based Higgs physics and other types of experiments, such as gravitational wave observatories is briefly outlined.

    hep-phhep-exPoS(2022)·1 citation
  12. 12*

    Towards detecting super-GeV dark matter via annihilation to neutrinos

    L. Salvador Miranda🇨🇳 · S. Basegmez du Pree🇳🇱 · K. C. Y. Ng🇨🇳 · A. Cheek🇵🇱 · C. Arina🇧🇪

    The next generation of neutrino telescopes will feature unprecedented sensitivities in the detection of neutrinos. Here we study the capabilities of a large-scale neutrino telescope, like the fully-operating KM3NeT experiment in the near future, for detecting dark matter annihilation signals from the Galactic Centre. We consider both ORCA and ARCA detectors, covering dark matter masses from a few GeV to 100 TeV. We obtain the sensitivities with a maximum-likelihood analysis method and present them as upper limits in the thermally averaged annihilation cross-section into Standard Model fermions. Our projections show that the sensitivity of such a neutrino telescope can reach the thermal relic line for and for few GeV, for the NFW dark matter density profile. This demonstrates that ORCA- and ARCA-like detectors will be able to perform competitive dark matter searches in a wide range of masses. The implications of these striking projections are investigated in a few selected dark matter particle models, where we show that neutrino telescopes are able to probe new parameter space.

    hep-phJCAP(2023)·11 citations
  13. 13*

    Software tools for computing EW chiral amplitudes

    Javier Martinez-Martin🇪🇸 · Juan Jose Sanz-Cillero🇪🇸

    We present an implementation of the Electroweak Chiral Lagrangian (also denoted as Higgs Effective Theory) in several high energy physics Mathematica packages. In particular, we implement the bosonic part of the electoweak Lagrangian up to next-to-leading order for FeynRules, FeynArts and FeynCalc. These tools are publicly available and can be used to readily calculate the Feynman rules and amplitudes in the theory.

    hep-phhep-exNucl.Part.Phys.Proc.(2023)·2 citations
  14. 14*

    Emergence of ghost in once-subtracted on-shell unitarization in glueball-glueball scattering

    Enrico Trotti🇵🇱

    We investigate the scattering of two scalar glueballs in pure YM theory, using the well known dilaton potential. We perform the calculations considering a glueball mass of about GeV, as predicted by lattice QCD. We begin with the tree-level theory, but the question about the presence of a bound state needs a deeper study to be answered. Thus we unitarize the theory through a self energy loop function consisting of a single subtraction at the single glueball resonance pole. We show that this choice is inconsistent as it leads to the emergence of a ghost-like state with negative norm. This problem is related with the sign of the coefficient in the first order term of the expansion of the reverse unitarized amplitude. We briefly discuss the solution which consists of an additional subtraction in the loop function, as presented in Eur.Phys.J.C 82 (2022) 5, 487.

    hep-phEPJ Web Conf.(2022)·4 citations
  15. 15*

    Synergies of Drell-Yan, top and beauty in global SMEFT fits

    Cornelius Grunwald🇩🇪 · Gudrun Hiller🇩🇪 · Kevin Kröninger🇩🇪 · Lara Nollen🇩🇪

    We present a global fit of Drell-Yan, top-quark and beauty-physics data in the Standard Model Effective Field Theory framework using the Minimal Flavor Violation ansatz for the quark-flavor structure. The different energy scales are thereby connected by applying the renormalization group equation and matching onto the Weak Effective Theory in order to incorporate FCNCs at low energies into the fit. We find that the combination of the different sectors greatly improves the bounds on the Wilson coefficients.

    hep-phhep-ex0 citations
  16. 16*

    More on Denominator Regularization in Quantum Field Theory

    Anshika Bansal🇮🇳 · Namit Mahajan🇮🇳 · Dayanand Mishra🇮🇳

    Recently \cite{Horowitz:2022rpp,Horowitz:2022uak}, denominator regularisation (Den. Reg.) scheme has been proposed to handle divergences in quantum field theory. It is shown to yield results as simple as in dimensional regularisation scheme and also shown to be compatible with minimal subtraction scheme by taking several examples in field theory. In this article, we point out some interesting features of this regularisation scheme which appear as a consequence of the requirement of gauge invariance by revisiting QED vacuum polarisation and decay in this regularisation scheme.

    hep-phhep-th5 citations
  17. 17*

    Quark System, Compact Pentaquark, and Gauge/String Duality

    Oleg Andreev🇩🇪

    For the case of two light flavors we propose the stringy description of the system consisting of two heavy and three light quarks, with the aim of exploring the quark organization inside the system and its low-lying Born-Oppenheimer potentials as a function of the heavy quark separation. Our analysis reveals several critical separations related to the processes of string reconnection, breaking and junction annihilation. We find that a compact pentaquark configuration makes the dominant contribution to the potential of the first excited state at small separations, and for separations larger than , the antiquark-diquark-diquark structure emerges. Moreover, it turns out that the length scale of string junction annihilation is the same as that for the system. We also discuss the relation to the potential of the system and some relations among the masses of hadrons in the heavy quark limit.

    hep-phhep-lathep-thnucl-thPRD(2023)·13 citations
  18. 18*

    Width effects of broad new resonances in loop observables and application to

    Andreas Crivellin🇨🇭 · Martin Hoferichter🇨🇭

    In the phenomenology of strong interactions most physical states acquire a substantial width, and thus can only be defined in a model-independent way by pole positions and residues of the -matrix. This information is incorporated in the Källén-Lehmann representation, whose spectral function characterizes the shape of the resonance and can be constrained by the dominant decay channels. Here, we argue that similar effects become important whenever beyond-the-Standard-Model particles possess a sizable decay width - as possible for instance in cases with a large branching fraction to a dark sector or strongly coupled scenarios - and show how their widths can be incorporated in the calculation of loop observables. As an application, we consider the anomalous magnetic moment of the muon, including both the direct effect of new physics and the possible indirect impact of a broad light on cross sections. Throughout, we provide results for a general spectral function and its reconstruction from the one-loop imaginary part, where the latter captures the leading two-loop effects.

    hep-phhep-exhep-latnucl-thPRD(2023)·29 citations
  19. 19*

    Baryogenesis from Decaying Magnetic Helicity in Axiogenesis

    Raymond T. Co🇺🇸 · Valerie Domcke🇨🇭 · Keisuke Harigaya🇺🇸

    Generating axion dark matter through the kinetic misalignment mechanism implies the generation of large asymmetries for Standard Model fermions in the early universe. Even if these asymmetries are washed out at later times, they can trigger a chiral plasma instability in the early universe. Similarly, a direct coupling of the axion with the hypercharge gauge field can trigger a tachyonic instability. These instabilities produce helical magnetic fields, which are preserved until the electroweak phase transition. At the electroweak phase transition, these become a source of baryon asymmetry, which can be much more efficient than the original axiogenesis proposal. We discuss constraints on axion dark matter production from the overproduction of the baryon asymmetry as well as a minimal, albeit fine-tuned setup, where both the correct dark matter abundance and baryon asymmetry can be achieved. For a given axion decay constant, this leads to a sharp prediction for the mass of the radial direction of the Peccei Quinn field, which is a soft mass scale in supersymmetric theories.

    hep-phastro-ph.COJHEP(2023)·18 citations
  20. 20*

    Response to "Parton distributions need representative sampling"

    The NNPDF Collaboration: Richard D. Ball🇬🇧 · Juan Cruz-Martinez🇨🇭 · Luigi Del Debbio🇬🇧 · Stefano Forte🇮🇹 · Zahari Kassabov🇬🇧 · Emanuele R. Nocera🇮🇹 · Juan Rojo🇳🇱 · Roy Stegeman🇬🇧 · Maria Ubiali🇬🇧

    We respond to the criticism raised by Courtoy et al., in which the faithfulness of the NNPDF4.0 sampling is questioned and an under-estimate of the NNPDF4.0 PDF uncertainties is implied. We list, correct, and clarify in detail a number of inaccurate or misleading claims that are made in this Reference. Specifically, we explain and explicitly demonstrate why the central value of the PDF distribution does not generally coincide with the absolute minimum of the to the data. We examine some PDFs that have been constructed in the above study and claimed to be "good solutions": we show that similar PDFs are found with the NNPDF methodology, but with very low probability.

    hep-phhep-ex13 citations
  21. 21*

    Inclusive semileptonic -decays from lattice QCD

    Paolo Gambino🇮🇹 · Shoji Hashimoto🇯🇵 · Sandro Mächler🇮🇹 · Marco Panero🇮🇹 · Francesco Sanfilippo🇮🇹 · Silvano Simula🇮🇹 · Antonio Smecca🇮🇹 · Nazario Tantalo🇮🇹

    We present the lattice QCD calculation of inclusive semileptonic -meson decays. We follow a recently proposed method, which is based on the extraction of smeared spectral densities from Euclidean correlation functions and on the numerical reconstruction of the integration kernel relevant for the inclusive decay rate calculation. We compute four-point Euclidean correlation functions using JLQCD and ETM gauge ensembles with unphysically light -quark masses, and apply two different methods for the integration kernel reconstruction. Finally, we show that the lattice results obtained in this work are in good agreement with the analytic predictions of the operator-product-expansion. This opens the path for a future full lattice QCD calculation to be used as theoretical input for the determination of the magnitude of the CKM element .

    hep-lathep-phPoS(2023)·4 citations
  22. 22*

    Deep Learning for the Matrix Element Method

    Matthew Feickert🇺🇸 · Mihir Katare🇺🇸 · Mark Neubauer🇺🇸 · Avik Roy🇺🇸

    Extracting scientific results from high-energy collider data involves the comparison of data collected from the experiments with synthetic data produced from computationally-intensive simulations. Comparisons of experimental data and predictions from simulations increasingly utilize machine learning (ML) methods to try to overcome these computational challenges and enhance the data analysis. There is increasing awareness about challenges surrounding interpretability of ML models applied to data to explain these models and validate scientific conclusions based upon them. The matrix element (ME) method is a powerful technique for analysis of particle collider data that utilizes an \textit{ab initio} calculation of the approximate probability density function for a collision event to be due to a physics process of interest. The ME method has several unique and desirable features, including (1) not requiring training data since it is an \textit{ab initio} calculation of event probabilities, (2) incorporating all available kinematic information of a hypothesized process, including correlations, without the need for feature engineering and (3) a clear physical interpretation in terms of transition probabilities within the framework of quantum field theory. These proceedings briefly describe an application of deep learning that dramatically speeds-up ME method calculations and novel cyberinfrastructure developed to execute ME-based analyses on heterogeneous computing platforms.

    hep-exhep-phPoS(2022)·4 citations
  23. 23*

    Transport coefficients in AdS/CFT and quantum gravity corrections due to a functional measure

    Iberê Kuntz🇧🇷 · Roldao da Rocha🇧🇷

    The presence of a functional measure is scrutinized on both sides of the dual gauge/gravity correspondence. Corrections to the transport coefficients in relativistic hydrodynamics are obtained using the linear response procedure. In particular, using first-order hydrodynamics, the shear viscosity, entropy density, diffusion constant, and speed of sound are shown not to acquire any corrections from the functional measure of gravity, for a Minkowski background metric. On the other hand, the energy density, the pressure, the relaxation time, the bulk viscosity, the decay rate of sound waves, and coefficients of conformal traceless tensor fields, are shown to carry significant quantum corrections due to the functional measure, even for a flat background. They all acquire an imaginary part that reflects the instability of the strongly-coupled fluids on the boundary CFT. This opens up the possibility of testing quantum gravity with the quark-gluon plasma.

    hep-thgr-qchep-phNPB(2023)·11 citations
  24. 24*

    Primordial black holes from D-parity breaking in SO(10) grand unified theory

    Sasmita Mishra🇮🇳 · Urjit A. Yajnik🇮🇳

    The growing evidence of gravitational waves from binary black hole mergers has renewed the interest in study of primordial black holes (PBH). Here we study a mechanism for the formation of PBH from collapse of pseudo-topological domain walls which form out of equilibrium during inflation and then collapse post inflation. We apply the study to domain wall formation due to -parity embedded in a supersymmetric grand unified theory (GUT) based on and compare the abundance of resulting PBH with the existing constraints. Thus the macroscopic relics can then be used to constrain or rule out a GUT, or demand a refinement of the theory of PBH formation in this class of GUTs.

    astro-ph.COhep-phJCAP(2023)·0 citations
  25. 25*

    Hybrid stars may have an inverted structure

    Chen Zhang🇨🇳 · Jing Ren🇨🇳

    We propose a new stellar structure of compact stars, the ``cross stars" that consist of a hadronic matter core and a quark matter crust, with an inverted structure compared to the conventional hybrid stars. This distinct stellar structure naturally arises from the quark matter to hadronic matter transition associated with the chemical potential crossing, in the context of the quark matter hypothesis that either strange or up-down quark matter is the ground state of baryonic matter at low pressure. We find that the interplay between the hadronic matter and quark matter compositions of cross stars can help to reconcile the small radii constraints indicated by the LIGO/Virgo GW170817 event, the large radii constraints set for massive compact stars by recent NICER X-ray observations, and the recent observation of the most-massive pulsar PSR J0952-0607. This leaves more space open for the equation of states of both hadronic matter and quark matter.

    astro-ph.HEgr-qchep-phnucl-thPRD(2023)·16 citations
  26. 26*

    The muon anomalous magnetic moment: is the lattice spacing small enough?

    Christopher Aubin🇺🇸 · Thomas Blum🇺🇸 · Maarten Golterman🇺🇸 · Santiago Peris🇪🇸

    We present new results for the light-quark connected part of the leading order hadronic-vacuum-polarization (HVP) contribution to the muon anomalous magnetic moment, using staggered fermions. We have collected more statistics on previous ensembles, and we added two new ensembles. This allows us to reduce statistical errors on the HVP contribution and related window quantities significantly. We also calculated the current-current correlator to next-to-next-to-leading order (NNLO) in staggered chiralperturbation theory, so that we can correct to NNLO for finite-volume, pion-mass mistuning and taste-breaking effects. We discuss the applicability of NNLO chiral perturbation theory, emphasizing that it provides a systematic EFT approach to the HVP contribution, but not to short- or intermediate-distance window quantities. This makes it difficult to assess systematic errors on the standard intermediate-distance window quantity that is now widely considered in the literature. In view of this, we investigate a longer-distance window, for which EFT methods should be more reliable. Our most important conclusion is that new high-statistics computations at lattice spacings significantly smaller than 0.06 fm are indispensable. The ensembles we use have been generously provided by MILC and CalLat.

    hep-lathep-phPoS(2023)·4 citations
  27. 27*

    Non-perturbative insights into the spectral properties of QCD at finite temperature

    Peter Lowdon🇩🇪 · Owe Philipsen🇩🇪

    In quantum field theories at finite temperature spectral functions describe how particle systems behave in the presence of a thermal medium. Although data from lattice simulations can in principle be used to determine spectral function characteristics, existing methods rely on the extraction of these quantities from temporal correlators, which requires one to circumvent an ill-posed inverse problem. In these proceedings we report on a recent approach that instead utilises the non-perturbative constraints imposed by field locality to extract spectral function information directly from spatial correlators. In particular, we focus on the application of this approach to lattice QCD data of the spatial pseudo-scalar meson correlator in the temperature range , and outline why this data supports the conclusion that there exists a distinct pion state above the chiral pseudo-critical temperature .

    hep-lathep-phhep-thnucl-thEPJ Web Conf.(2022)·5 citations
  28. 28*

    Three-gluon vertex in Landau-gauge from quenched-lattice QCD in general kinematics

    F. Pinto-Gomez🇪🇸 · F. de Soto🇪🇸

    We report on a novel and extensive lattice QCD analysis for the three-gluon vertex from quenched lattice-QCD simulations. Using standard Wilson action, we have computed the three-gluon vertex beyond the usual kinematic restriction to the symmetric and soft-gluon cases where it depends on a single momentum scale. The so-dubbed bisectoral case , where the transversely projected vertex can be cast in terms of three independent tensors, have been the object of a recent exhaustive scrutiny, also shown in this communication. Herein, beyond this special case, results for kinematic configurations with three different squared momenta are also presented. All data considered, the lattice estimate of the three-gluon vertex exhibits a clear dominance of the tree-level tensor form factor.

    hep-lathep-phEPJ Web Conf.(2022)·5 citations
  29. 29*

    Momentum transport of chiral modes in a thermal QCD medium

    Pushpa Panday🇮🇳 · Binoy Krishna Patra🇮🇳

    We have investigated the effect of a weak magnetic field on momentum transport in a thermal QCD medium at finite quark chemical potential using a semiclassical kinetic theory. In the presence of a magnetic field, the momentum transport coefficients acquire a tensor structure, reflected by the five shear and and two bulk viscous components and . The weak magnetic field removes the degeneracy in the effective mass of flavours, leading to different masses for the left-handed (L) and right-handed (R) chiral modes of quarks. The coefficients, and decrease with magnetic field in L mode and increase in mode, whereas, and increase in both L and mode. The bulk viscous coefficients, and increase with magnetic field for both L and R mode. The shear and bulk viscous coefficients positively amplify with baryon asymmetry.

    nucl-thhep-phIJMPE(2024)·5 citations
  30. 30*

    Status of the W-boson mass averaging project

    Simone Amoroso (on behalf of the Tevatron/LHC W-mass combination Working Group)🇩🇪

    We present the current status of the W-boson mass averaging project, an ongoing effort aimed at combining Tevatron and LHC measurements. Methods are presented to accurately evaluate the effect of PDFs and other modelling variations on existing measurements. Based on this approach, the measurements can be corrected to a common modelling reference and to the same PDFs, and subsequently combined accounting for PDF correlations in a quantitative way. We discuss the combination procedure, and the impact of improvements in the theoretical description of W-boson production and decay.

    hep-exhep-phPoS·4 citations
  31. 31*

    Cornering Large- QCD with Positivity Bounds

    Clara Fernandez🇪🇸 · Alex Pomarol🇪🇸 · Francesco Riva🇨🇭 · Francesco Sciotti🇪🇸

    The simple analytic structure of meson scattering amplitudes in the large- limit, combined with positivity of the spectral density, provides precise predictions on low-energy observables. Building upon previous studies, we explore the allowed regions of chiral Lagrangian parameters and meson couplings to pions. We reveal a structure of kinks at all orders in the chiral expansion and develop analytical tools to show that kinks always correspond to amplitudes with a single light pole. We build (scalar- and vector-less) deformations of the Lovelace-Shapiro and Coon UV-complete amplitudes, and show that they lie close to the boundaries. Moreover, constraints from crossing-symmetry imply that meson couplings to pions become smaller as their spin increases, providing an explanation for the success of Vector Meson Dominance and holographic QCD. We study how these conclusions depend on assumptions about the high-energy behavior of amplitudes. Finally, we emphasize the complementarity between our results and Lattice computations in the exploration of large- QCD.

    hep-thhep-lathep-phJHEP(2023)·75 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.