PaperPanorama

Nuclear Experiment·nucl-ex

Thu·Jan 1, 2026

2 papers0 primary·2 cross-listed·reconstructed*

  1. 01*

    A Low Background Beta Detection System using a Time Projection Chamber

    Ruiyang Zhang🇨🇳 · Zhiyong Zhang🇨🇳 · Zengxuan Huang🇨🇳 · Yong Zhou🇨🇳 · Jianbei Liu🇨🇳 · Songsong Tang🇨🇳 · Yuanfei Cheng🇨🇳 · Changqing Feng🇨🇳 · Ming Shao🇨🇳 · Yi Zhou🇨🇳

    In this paper, we present a Time Projection Chamber (TPC) system for low-background beta radiation measurements. The system consists of a TPC with two-dimensional-strip readout Micromegas and an anti-coincidence detector with readout pads for cosmic ray veto. The detector system utilize an AGET-based waveform sampling system for data acquisition. The beta detection capability of the system was verified through experimental test using Sr beta source. Additionally, a dedicated simulation program based on Geant4 was developed to model the entire detection process, including responses to both the beta source and background radiation. Simulation results were compared with experimental data for both beta and background samples, showing good agreements. The simulation samples were utilized to optimize and train classification models for beta and background discrimination. By applying the selected model into test data, the system achieved a background rate of 0.49 while retaining more than 55% of Sr beta signals within a 7 cm diameter detection region. Further analysis revealed that approximately 70% of the background originates from environmental gamma radiation, while the remaining contribution mainly comes from intrinsic radioactivity of detector materials, particularly the FR-4 based field cage and readout plane. Based on the knowledge gained from the experiments and simulations, an optimization of the TPC system has been proposed, with simulation predicting a potential reduction of the background rate to 0.0012 .

    physics.ins-detnucl-exNucl.Sci.Tech.(2026)·0 citations
  2. 02*

    Non-Equilibrium Dynamics in QCD and Holography

    Matthias Kaminski🇺🇸

    The plasma generated in heavy ion collisions goes through different phases in its time evolution. While early times right after the collision are governed by far-from equilibrium dynamics, later times are believed to be well described by near-equilibrium dynamics. While the regimes of non-equilibrium are prohibitively complicated to describe within QCD, effective descriptions such as hydrodynamics provide a viable approach. In addition, holographic descriptions allow access to the full non-equilibrium dynamics at strong coupling. In this presentation, we review three examples of such hydrodynamic approaches and corresponding holographic descriptions: 1) non-equilibrium shear viscosity, 2) propagation of non-equilibrium sound waves, and 3) the non-equilibrium chiral magnetic effect.

    nucl-thhep-thnucl-exJ.Subatomic Part.Cosmol.(2026)·3 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.