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Development of double-sided silicon strip detectors (DSSD) for a Compton telescope

机译:开发用于康普顿望远镜的双面硅条探测器(DSSD)

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摘要

The low noise double-sided silicon strip detector (DSSD) technology is used to construct a next generation Compton telescope which is required to have both high-energy resolution and high-Compton reconstruction efficiency. In this paper, we present the result of a newly designed stacked DSSD module with high-energy resolution in highly packed mechanical structure. The system is designed to obtain good P-side and N-side noise performance by means of DC-coupled read-out. Since there are no decoupling capacitors in front-end electronics before the read-out ASICs, a high density stacked module with a pitch of 2 mm can be constructed. By using a prototype with four-layer of DSSDs with an area of 2.56cm × 2.56 cm, we have succeeded to operate the system. The energy resolution at 59.5 keV is measured to be 1.6 keV (FWHM) for the P-side and 2.8 keV (FWHM) for the N-side, respectively. In addition to the DSSD used in the prototype, a 4 cm wide DSSD with a thickness of 300 μm is also developed. With this device, an energy resolution of 1.5 keV (FWHM) was obtained. A method to model the detector energy response to properly handle split events is also discussed.
机译:低噪声双面硅条检测器(DSSD)技术用于构造下一代Compton望远镜,该望远镜需要兼具高能量分辨率和高Compton重建效率。在本文中,我们介绍了新设计的堆叠DSSD模块的结果,该模块具有高能量分辨率,且结构紧凑。该系统旨在通过直流耦合读出获得良好的P侧和N侧噪声性能。由于在读出ASIC之前在前端电子设备中没有去耦电容器,因此可以构建间距为2 mm的高密度堆叠模块。通过使用具有2.56cm×2.56cm面积的四层DSSD的原型,我们成功地运行了该系统。在P侧测得的59.5 keV能量分辨率为1.6 keV(FWHM),在N侧测得的能量分辨率为2.8 keV(FWHM)。除了原型中使用的DSSD,还开发了厚度为300μm的4 cm宽DSSD。使用该器件,可获得1.5 keV(FWHM)的能量分辨率。还讨论了为检测器能量响应建模以正确处理拆分事件的方法。

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