Simulating the TPC Detector Geometry for the MPD Experiment

Abstract The NICA MPD experiment, like all modern physics experiments, is based on simulation data. Detailed geometry, containing information not only about the dimensions and materials of the detector’s structural elements but also about its internal volumes, is a necessary component of most stages of physical modeling. In some cases, other specialized geometries may also be used. The article is devoted to the geometries of MPD TPC (Time Projection Chamber) for the MpdRoot and ACTS software packages.

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Publication Details

Journal
Physics of Particles and Nuclei
Published
2026-09-15
DOI
https://doi.org/10.1134/s1063779626701479
Primary Topic
Particle Detector Development and Performance
Type
article
Field-Weighted Citation Impact
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article

Simulating the TPC Detector Geometry for the MPD Experiment

S. Hnatic, O.V. Rogachevsky, A. V. Bychkov
Physics of Particles and Nuclei
Particle Detector Development and Performance
article

Simulating the TPC Detector Geometry for the MPD Experiment

S. Hnatic, O.V. Rogachevsky, A. V. Bychkov
article en

Abstract

Abstract The NICA MPD experiment, like all modern physics experiments, is based on simulation data. Detailed geometry, containing information not only about the dimensions and materials of the detector’s structural elements but also about its internal volumes, is a necessary component of most stages of physical modeling. In some cases, other specialized geometries may also be used. The article is devoted to the geometries of MPD TPC (Time Projection Chamber) for the MpdRoot and ACTS software packages.

Physics of Particles and NucleiVol. 57(5)
Joint Institute for Nuclear Research (RU)
Openalex Percentile: Top 12%
Particle Detector Development and Performance
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