Laboratory Working Out of a Space Experiment on Gamma Spectrometry of Planetary Matter with a High-Purity Germanium Detector Using the Method of Tagged Charged Particles
This article presents a description of the experiment on the Joint Institute for Nuclear Research (JINR) Phasotron proton beam for a laboratory model of a space instrument for the gamma spectrometry of celestial bodies based on the method of tagged charged particles of galactic cosmic rays. One feat...
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Veröffentlicht in: | Physics of particles and nuclei letters 2023-10, Vol.20 (5), p.1016-1029 |
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creator | Mokrousov, M. I. Mitrofanov, I. G. Anikin, A. A. Golovin, D. V. Kozyrev, A. S. Litvak, M. L. Nikiforov, S. Y. Sanin, A. B. Timoshenko, G. N. Shvetsov, V. N. Pavlik, E. E. |
description | This article presents a description of the experiment on the Joint Institute for Nuclear Research (JINR) Phasotron proton beam for a laboratory model of a space instrument for the gamma spectrometry of celestial bodies based on the method of tagged charged particles of galactic cosmic rays. One feature of the experiment is the use of a p-type high-purity germanium semiconductor detector as part of the model. |
doi_str_mv | 10.1134/S1547477123050540 |
format | Article |
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subjects | Charged particles Galactic cosmic rays Germanium Methods of Physical Experiment Nuclear research P-type semiconductors Particle and Nuclear Physics Physics Physics and Astronomy Proton beams Purity Semiconductor charged particle detectors Spectrometry |
title | Laboratory Working Out of a Space Experiment on Gamma Spectrometry of Planetary Matter with a High-Purity Germanium Detector Using the Method of Tagged Charged Particles |
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