基于 DSSD 传感器的跟踪模块在 BM@N 项目 SC-1000 加速器上的特性分析

IF 0.4 Q4 PHYSICS, PARTICLES & FIELDS Physics of Particles and Nuclei Letters Pub Date : 2024-08-14 DOI:10.1134/s1547477124701000
D. V. Dementev, A. D. Sheremetev, M. O. Shitenkov, V. V. Leontiev, I. A. Rufanov, Yu. A. Murin
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引用次数: 0

摘要

摘要 介绍了对基于双面微带硅传感器的模块特性的研究结果,这些模块是为建立 BM@N 设施的宽孔径硅跟踪系统而设计的。模块的主要特点是使用基于 STS-XYTER 芯片的快速读出电子装置,以及使用超轻(0.23% X0)铝制微电缆将模拟信号从传感器带传输到读出电子装置的输入通道。报告介绍了在 PNPI SC-1000 加速器上对提取的质子束进行不同配置跟踪模块测试的结果。结果表明,在接近 360 kHz s-1 cm-2 最大值的负载下,读出电子装置能够稳定运行。信噪比不低于 23。光束望远镜内各模块的测量坐标分辨率为 17 ± 0.4 μm,探测器对能量为 1 GeV 的质子的记录效率不低于 99%。
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Characterization of Tracking Modules Based on DSSD Sensors at the SC-1000 Accelerator for the BM@N Project

Abstract

The results of studying characteristics of modules based on double-sided microstrip silicon sensors, which are designed to create the wide-aperture Silicon Tracking System for the BM@N facility, are presented. The main module features are the use of fast readout electronics based on the STS-XYTER chip and the application of ultralight (0.23% X0) aluminum microcables for transmitting analog signals from the sensor strips to the input channels of the readout electronics. The results of testing different configurations of tracking modules on the extracted beam of protons at the SC-1000 accelerator in the PNPI are presented. The stable operation of readout electronics is demonstrated at loads close to the maximum values of 360 kHz s–1 cm–2. The signal-to-noise ratio was no less than 23. The measured coordinate resolution of the modules within the beam telescope was 17 ± 0.4 μm, and the detector efficiency of recording for protons with energy of 1 GeV was no less than 99%.

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来源期刊
Physics of Particles and Nuclei Letters
Physics of Particles and Nuclei Letters PHYSICS, PARTICLES & FIELDS-
CiteScore
0.80
自引率
20.00%
发文量
108
期刊介绍: The journal Physics of Particles and Nuclei Letters, brief name Particles and Nuclei Letters, publishes the articles with results of the original theoretical, experimental, scientific-technical, methodological and applied research. Subject matter of articles covers: theoretical physics, elementary particle physics, relativistic nuclear physics, nuclear physics and related problems in other branches of physics, neutron physics, condensed matter physics, physics and engineering at low temperatures, physics and engineering of accelerators, physical experimental instruments and methods, physical computation experiments, applied research in these branches of physics and radiology, ecology and nuclear medicine.
期刊最新文献
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