Analyzing Power Measurements of Quasi-Elastic Proton–Proton Scattering at the Intermediate Energies at the Nuclotron Internal Target

IF 0.3 4区 物理与天体物理 Q4 PHYSICS, NUCLEAR
I. S. Volkov, A. V. Averyanov, I. E. Vnukov, Yu. V. Gurchin, D. Enache, A. Yu. Isupov, J.-T. Karachuk, D. O. Krivenkov, P. K. Kurilkin, V. P. Ladygin, A. N. Livanov, S. M. Piyadin, S. G. Reznikov, Ya. T. Skhomenko, A. A. Terekhin, A. V. Tishevsky, E. V. Chernykh, M. Janek
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引用次数: 0

Abstract

Obtaining new data on the polarization observables is the important part of the nucleon–nucleon scattering models’ development. For this purpose, the polarized deuteron beam and the detection setup at the Nuclotron internal target station were used. Counters were mounted in according to \(pp\)-elastic scattering kinematics. Relevant events were selected using time and amplitude information from the counters. The polyethylene target was used as the main target. Auxiliary carbon target was used to remove the background. This article presents the results of the vector analyzing power measurement for the proton–proton quasi-elastic scattering at the deuteron beam energies of 200, 500, 550, 650 MeV/nucleon. The obtained results are in a good accordance with the data of other experiments and the partial wave analyzis SP07 SAID predictions.

Abstract Image

中子内部靶准弹性质子-质子中间能散射功率测量分析
极化观测数据的获取是核子-核子散射模型发展的重要组成部分。为此,采用了偏振氘核束和核中子内部靶站的探测装置。计数器按照\(pp\) -弹性散射运动学安装。使用计数器的时间和幅度信息选择相关事件。以聚乙烯靶为主要靶材。采用辅助碳靶去除背景。本文介绍了在氘核束能量为200,500,550,650 MeV/核子时质子-质子准弹性散射的矢量分析功率测量结果。所得结果与其它实验数据和SP07局部波分析预测结果吻合较好。
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来源期刊
Physics of Atomic Nuclei
Physics of Atomic Nuclei 物理-物理:核物理
CiteScore
0.60
自引率
25.00%
发文量
56
审稿时长
3-6 weeks
期刊介绍: Physics of Atomic Nuclei is a journal that covers experimental and theoretical studies of nuclear physics: nuclear structure, spectra, and properties; radiation, fission, and nuclear reactions induced by photons, leptons, hadrons, and nuclei; fundamental interactions and symmetries; hadrons (with light, strange, charm, and bottom quarks); particle collisions at high and superhigh energies; gauge and unified quantum field theories, quark models, supersymmetry and supergravity, astrophysics and cosmology.
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