PaperPanorama

HEP Phenomenology·hep-ph

Mon·Feb 10, 2020

12 papers8 primary·4 cross-listed·reconstructed*

  1. 01*

    Effective quantum kinetic theory for spin transport of fermions with collsional effects

    Di-Lun Yang🇯🇵 · Koichi Hattori🇯🇵 · Yoshimasa Hidaka🇯🇵

    We systematically derive the collision term for the axial kinetic theory, a quantum kinetic theory delineating the coupled dynamics of the vector/axial charges and spin transport carried by the massive spin-1/2 fermions traversing a medium. We employ the Wigner-function approach and propose a consistent power-counting scheme where the axial-charge distribution function, a non-conserved quantity for massive particles, is accounted as the first-order quantity in the expansion, while the vector-charge distribution function the zeroth-order quantity. This specific power-counting scheme allows us to organize a reduced expansion for the collision term and to formally identity the spin-diffusion effect and the spin-polarization effect at the same order. We confirm that the obtained collisional axial kinetic theory smoothly reduces to the chiral kinetic theory in the massless limit, serving as a consistency check. In the absence of electromagnetic fields, we further present the simplified axial kinetic equations suitable for tracking dynamical spin polarization of heavy and light fermions, respectively. As an application to the weakly coupled quark-gluon plasma at high temperature, we compute the spin-diffusion term for massive quarks within the leading-log approximation. The formal expression for the first-order terms provides a path toward evaluation of the spin polarization effect in quantum chromodynamics.

    hep-phhep-thnucl-thJHEP(2020)·134 citations
  2. 02*

    Magnetic Field in the Charged Subatomic Swirl

    Xingyu Guo🇨🇳 · Jinfeng Liao🇺🇸 · Enke Wang🇨🇳

    We report a novel relation between rotation and magnetic field in a charged fluid system: there is naturally a magnetic field along the direction of fluid vorticity due to the currents associated with the swirling charges. This general connection is demonstrated using a fluid vortex. Applying the idea to heavy ion collisions we propose a new mechanism for generating in-medium magnetic field with a relatively long lifetime. We estimate the magnitude of this new magnetic field in the Au-Au colliding systems across a wide span of collisional beam energy. Such a magnetic field is found to increase rapidly toward lower beam energy and could account for a significant amount of the experimentally observed global polarization difference between hyperons and anti-hyperons.

    hep-phnucl-thNPA(2021)·2 citations
  3. 03*

    Neutrino quantum decoherence engendered by neutrino radiative decay

    Konstantin Stankevich🇷🇺 · Alexander Studenikin🇷🇺

    A new theoretical framework, based on the quantum field theory of open systems applied to neutrinos, has been developed to describe the neutrino evolution in external environments accounting for the effect of the neutrino quantum decoherence. The developed new approach enables one to obtain the explicit expressions of the decoherence and relaxation parameters that account for a particular process, in which the neutrino participates, and also for the characteristics of an external environment and of the neutrino itself, including the neutrino energy. We have used this approach to consider a new mechanism of the neutrino quantum decoherence engendered by the neutrino radiative decay to photons and dark photons in an astrophysical environment. The importance of the performed studies is highlighted by the prospects of the forthcoming new large volume neutrino detectors that will provide new frontier in high-statistics measurements of neutrino fluxes from supernovae.

    hep-phastro-ph.HEPRD(2020)·20 citations
  4. 05*

    Towards an amplitude analysis of the decay

    Johannes Albrecht🇩🇪 · Yasmine Amhis🇫🇷 · Anja Beck🇩🇪 · Carla Marin Benito🇫🇷

    The helicity formalism applied to the radiative decay is presented for the first time in this paper. The aim is to provide the necessary formalism to be able to resolve the resonant structures at the photon pole by means of an amplitude analysis. Experimental effects, such as resolution, are also discussed.

    hep-phhep-exJHEP(2020)·7 citations
  5. 06*

    Towards a Heavy Diquark Effective Theory for Weak Decays of Doubly Heavy Baryons

    Yu-Ji Shi🇩🇪 · Wei Wang🇨🇳 · Zhen-Xing Zhao🇨🇳 · Ulf-G. Meißner🇩🇪

    We construct a leading-order effective field theory for both scalar and axial-vector heavy diquarks, and consider its power expansion in the heavy diquark limit. By assuming the transition from QCD to diquark effective theory, we derive the most general form for the effective diquark transition currents based on the heavy diquark symmetry. The short-distance coefficients between QCD and heavy diquark effective field theory are also obtained by a tree level matching. With the effective currents in the heavy diquark limit, we perform a reduction of the form factors for semi-leptonic decays of doubly heavy baryons, and find that only one nonperturbative function is remaining. It is shown that this soft function can be related to the Isgur-Wise function in heavy meson transitions. As a phenomenological application, we take a single pole structure for the reduced form factor, and use it to calculate the semi-leptonic decay widths of doubly heavy baryons. The obtained results are consistent with others given in the literature, and can be tested in the future.

    hep-phhep-exEPJC(2020)·33 citations
  6. 07*

    Four-loop QCD MOM beta functions from the three-loop vertices at the symmetric point

    Alexander Bednyakov🇷🇺 · Andrey Pikelner🇷🇺

    For the first time, we compute three-loop contributions to all triple vertices in QCD at the symmetric point. The analytic results are obtained in massless QCD with an arbitrary color group in the Landau gauge. All new loop integrals are expressed in terms of harmonic polylogarithms at the sixth root of unity. These corrections allow us to derive expressions for the four-loop QCD beta function in a set of momentum-subtraction schemes.

    hep-phhep-lathep-thPRD(2020)·14 citations
  7. 08*

    Parton Distribution Functions of the Charged Pion Within The xFitter Framework

    Ivan Novikov🇷🇺 · Hamed Abdolmaleki🇮🇷 · Daniel Britzger🇩🇪 · Amanda Cooper-Sarkar🇬🇧 · Francesco Giuli🇮🇹 · Alexander Glazov🇩🇪 · Aleksander Kusina🇵🇱 · Agnieszka Luszczak🇵🇱 · Fred Olness🇺🇸 · Pavel Starovoitov🇩🇪 · Mark Sutton🇬🇧 · Oleksandr Zenaiev🇩🇪

    We present the first open-source analysis of parton distribution functions (PDFs) of charged pions using xFitter, an open-source QCD fit framework to facilitate PDF extraction and analyses. Our calculations are implemented at next-to-leading order (NLO) using APPLgrids generated by MCFM generator. Using currently available Drell-Yan and photon production data, we find the valence distribution is well constrained; however, the considered data are not sensitive enough to unambiguously determine sea and gluon distributions. Fractions of momentum carried by the valence, sea and gluon components are discussed, and we compare with the results of JAM collaboration and the GRV group.

    hep-phPRD(2020)·151 citations
  8. 09*

    QCD equation of state at finite densities for nuclear collisions

    Akihiko Monnai🇯🇵 · Björn Schenke🇺🇸 · Chun Shen🇺🇸

    We construct the QCD equation of state at finite chemical potentials including net baryon, electric charge, and strangeness based on the results of lattice QCD simulations and the hadron resonance gas model. The situation of strangeness neutrality and a fixed charge-to-baryon ratio, which resembles that of heavy nuclei, is considered for the application to relativistic heavy-ion collisions. This increases the values of baryon chemical potential compared to the case of vanishing strangeness and electric charge chemical potentials, modifying the fireball trajectory in the phase diagram. We perform viscous hydrodynamic simulations and demonstrate the importance of multiple chemical potentials for identified particle production in heavy-ion collisions at the RHIC and SPS beam energy scan energies.

    nucl-thhep-phnucl-exNPA(2021)·4 citations
  9. 10*

    Precision measurements of Triple Gauge Couplings at future electron-positron colliders

    Jakob Beyer🇩🇪 · Robert Karl🇩🇪 · Jenny List🇩🇪

    A precise knowledge of charged Triple Gauge Couplings (cTGCs) is important for the determination of Higgs couplings and for constraining physics beyond the Standard Model. Future high-energy colliders could have a significantly improved sensitivity to anomalous cTGCs. The fit framework presented here extracts cTGCs in parallel with chiral cross sections and beam polarisation parameters. It demonstrates that cTGCs can be measured with precision in the range. A strong dependence of the cTGC sensitivity on the available luminosities and polarisations is observed.

    hep-exhep-ph6 citations
  10. 11*

    Report on the ECFA Early-Career Researchers Debate on the 2020 European Strategy Update for Particle Physics

    N. Andari (CEA, Saclay, France) · L. Apolinário (LIP, Lisbon, Portugal) · K. Augsten (Czech Technical University in Prague, Czech Republic) · E. Bakos (Institute if Physics Belgrade,Serbia) · I. Bellafont (CELLS-ALBA, Cerdanyola del Vallès, Spain) · L. Beresford (The University of Oxford, United Kingdom) · A. Bethani (Université catholique de Louvain, Louvain-la-Neuve, Belgium) · J. Beyer (DESY Hamburg, Germany) · L. Bianchini (INFN Sezione di Pisa, Italy) · C. Bierlich (Lund University, Sweden) · B. Bilin (ULB/IIHE, Brussels, Belgium) · K. L. Bjørke (University of Oslo, Norway) and 109 other authors

    A group of Early-Career Researchers (ECRs) has been given a mandate from the European Committee for Future Accelerators (ECFA) to debate the topics of the current European Strategy Update (ESU) for Particle Physics and to summarise the outcome in a brief document [1]. A full-day debate with 180 delegates was held at CERN, followed by a survey collecting quantitative input. During the debate, the ECRs discussed future colliders in terms of the physics prospects, their implications for accelerator and detector technology as well as computing and software. The discussion was organised into several topic areas. From these areas two common themes were particularly highlighted by the ECRs: sociological and human aspects; and issues of the environmental impact and sustainability of our research.

    hep-exhep-ph6 citations
  11. 12*

    Order Parameter and Magnetization of Antiferromagnets in Mutually Parallel Staggered and Magnetic Fields

    Christoph P. Hofmann🇲🇽

    We explore the behavior of the order parameter and the magnetization of antiferromagnetic solids subjected to mutually parallel staggered and magnetic fields. The effective field theory analysis of the partition function is taken up to the two-loop level, where the magnon-magnon interaction comes into play. These interaction effects, however, are small. A phenomenon that comes rather unexpectedly is that the finite-temperature magnetization increases with temperature when the strengths of the staggered and magnetic field are held constant.

    cond-mat.str-elhep-lathep-ph0 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.