PaperPanorama

Nuclear Theory·nucl-th

Tuesday·January 25, 2022

10 papers7 primary·3 cross-listed

  1. 08

    Long and short distance behavior of the imaginary part of the heavy-quark potential

    Kirill Boguslavski🇦🇹 · Babak Kasmaei🇺🇸 · Michael Strickland🇺🇸

    The imaginary part of the effective heavy-quark potential is related to the total in-medium decay width of heavy quark-antiquark bound states. We extract the static limit of this quantity using classical-statistical simulations of real-time Yang-Mills dynamics by measuring the temporal decay of Wilson loops. By performing the simulations on finer and larger lattices, we are able to show that the nonperturbative results follow the same form as the perturbative ones. For large quark-antiquark separations, we quantify the magnitude of the non-perturbative long-range corrections to the imaginary part of the heavy-quark potential. We present our results for a wide range of temperatures, lattice spacings, and lattice volumes. We also extract approximations for the short-distance behavior of the classical potential.

    hep-lathep-phnucl-thEPJ Web Conf.(2022)·0 citations
  2. 09

    Evidence against nuclear polarization as source of fine-structure anomalies in muonic atoms

    Igor A. Valuev (1)🇩🇪 · Gianluca Colò (2 and 3)🇮🇹 · Xavier Roca-Maza (2 and 3)🇮🇹 · Christoph H. Keitel (1)🇩🇪 · Natalia S. Oreshkina (1) ((1) Max-Planck-Institut für Kernphysik, Heidelberg, (2) Dipartimento di Fisica, Università degli Studi di Milano, (3) INFN, Sezione di Milano)🇩🇪

    A long-standing problem of fine-structure anomalies in muonic atoms is revisited by considering the splitting in muonic , and and the splitting in muonic . State-of-the-art techniques from both nuclear and atomic physics are brought together in order to perform the most comprehensive to date calculations of nuclear-polarization energy shifts. Barring the more subtle case of muonic , the results suggest that the dominant calculation uncertainty is much smaller than the persisting discrepancies between theory and experiment. We conclude that the resolution to the anomalies is likely to be rooted in refined QED corrections or even some other previously unaccounted-for contributions.

    physics.atom-phnucl-thquant-phPRL(2022)·30 citations
  3. 10

    QED Meson Description of the X17 and Other Anomalous Particles

    Cheuk-Yin Wong

    The X17 particle, the E38 particle, and the anomalous soft photons are anomalous particles because they do not appear to belong to any known Standard Model families. We propose a QED meson description of the anomalous particles as composite systems of a light quark and a light antiquark bound and confined by the compact QED interaction, by combining Polyakov's transverse confinement of opposite electric charges in compact QED in (2+1)D and Schwinger's longitudinal confinement for massless opposite electric charges in QED in (1+1)D. With predicted QED meson masses close to the observed X17 and E38 masses, QED mesons may be good candidates for the description of the anomalous particles.

    hep-phnucl-thpublished in page 36-40 of Workshop Proce…·14 citations

Affiliations

first authorsco-authorsvia INSPIRE