PaperPanorama

Nuclear Experiment·nucl-ex

Fri·Sep 2, 2022

4 papers0 primary·4 cross-listed·reconstructed*

  1. 01*

    Directed flow in relativistic resistive magneto-hydrodynamic expansion for symmetric and asymmetric collision systems

    Kouki Nakamura🇯🇵 · Takahiro Miyoshi🇯🇵 · Chiho Nonaka🇯🇵 · Hiroyuki R. Takahashi🇯🇵

    We construct a dynamical model for high-energy heavy-ion collision based on the relativistic resistive magneto-hydrodynamic framework. Using our newly developed (3+1)-dimensional relativistic resistive magneto-hydrodynamics code, we investigate magneto-hydrodynamic expansion in symmetric and asymmetric collision systems as a first application to high-energy heavy-ion collisions. As a realistic initial condition for electromagnetic fields, we consider the solutions of the Maxwell equations with the source term of point charged particles moving in the direction of the beam axis, including finite constant electrical conductivity of the medium. We evaluate the directed flow in the symmetric and asymmetric collisions at RHIC energy. We find a significant effect of finite electrical conductivity on the directed flow in the asymmetric collision system. We confirm that a certain amount of energy transfer by dissipation associated with Ohmic conduction occurs in the asymmetric collision system because of asymmetry of the electric field produced by two different colliding nuclei. Because this energy transfer makes the pressure gradient of the medium flatter, the growth of directed flow decreases.

    nucl-thhep-phnucl-exPRC(2023)·18 citations
  2. 02*

    The strangeness program at GlueX

    Peter Pauli (for the GlueX collaboration)🇬🇧

    The GlueX experiment located at Jefferson Lab studies the spectrum of hadrons using photoproduction on a LH target in a wide variety of final states. With its detector system capable of measuring neutral and charged final state particles over almost the full solid angle, and very good particle identification capabilities, GlueX can measure many different hadrons containing strangeness. A linearly polarized photon beam allows the measurement of polarization observables, which contain information about the production mechanisms involved in generating strange particles in photoproduction. In addition, GlueX can perform precise cross-section measurements, which help to study the spectrum of strange hadrons. In this presentation, the GlueX experiment is introduced, and recent progress of its strangeness program is discussed. We present recent results on beam asymmetries, (1520) spin-density matrix elements and ongoing studies of the (1405) lineshape. We also present our recent progress on measurements of and photoproduction. Also, future prospects for strangeness measurements at GlueX are discussed.

    hep-exnucl-exEPJ Web Conf.(2022)·10 citations
  3. 03*

    CORE -- a COmpact detectoR for the EIC

    CORE Collaboration: R. Alarcon (1) · M. Baker (26) · V. Baturin (3) P. Brindza (3) · S. Bueltmann (3) M. Bukhari (4) · R. Capobianco (5) · E. Christy (2) · S. Diehl (5,6) · M. Dugger (1) · R. Dupré (7) · R. Dzhygadlo (8) · K. Flood (9) · K. Gnanvo (2) and 42 other authors

    The COmpact detectoR for the Eic (CORE) Proposal was submitted to the EIC "Call for Collaboration Proposals for Detectors". CORE comprehensively covers the physics scope of the EIC Community White Paper and the National Academies of Science 2018 report. The design exploits advances in detector precision and granularity to minimize size. The central detector includes a 3Tesla, 2.5m solenoid. Tracking is primarily silicon. Electromagnetic calorimetry is based on the high performance crystals. Ring-imaging Cherenkov detectors provide hadronic particle identification.

    physics.ins-detnucl-ex16 citations
  4. 04*

    Report of the Topical Group on Micro-Pattern Gaseous Detectors for Snowmass 2021

    B. Surrow🇺🇸 · M. Titov🇫🇷 · S. Vahsen🇺🇸 · A. Bellerive🇨🇦 · K. Black🇺🇸 · A. Colaleo🇮🇹 · K. Dehmelt🇺🇸 · K. Gnanvo🇺🇸 · P. Lewis · D. Loomba🇺🇸 · C. O'Hare🇦🇺 · M. Posik🇺🇸 · A. White

    This report summarizes white papers on micro-pattern gaseous detectors (MPGDs) that were submitted to the Instrumentation Frontier Topical Group IF05, as part of the Snowmass 2021 decadal survey of particle physics.

    physics.ins-detastro-ph.IMhep-exnucl-ex5 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.