首页> 外文会议>Conference on hard x-ray, gamma-ray, and neutron detector physics XIII >Silicon Photomultipliers detectors for next generation high-energy space telescopes
【24h】

Silicon Photomultipliers detectors for next generation high-energy space telescopes

机译:下一代高能量空间望远镜的硅光电倍增器探测器

获取原文

摘要

Photon detection is a central element of any high-energy astronomy instrumentation. One classical setup that has proven successful in many missions is the combination of photomultiplier tubes (PMTs) with scintillators, converting incoming high-energy photons into visible light, which in turn is converted in an electrical impulse. Although being extremely sensitive and rapid, PMTs have the drawback of being bulky, fragile, and require a high-voltage power supply of up to several thousand volts. Recent technological advances in the development of silicon photomultipliers (SiPM) make them a promising alternative to PMTs in essentially all their applications. We have started a R&D program to assess the possibility of using SiPMs for space-based applications in the domain of high-energy astronomy. We will present results of our characterization studies of SiPMs from 3 manufacturers. Each SiPM detector has been tested inside a dedicated vacuum chamber and at low temperature to assess its performance in a representative space environment. Irradiation tests are scheduled to understand the susceptibility of SiPM to radiation damage. After comparison, we will select a baseline detector and design a specific front-end electronics and mechanical system. Furthermore, we plan to develop a low noise voltage power supply that ensures the stability of the SiPMs and to study their coupling to scintillators. Finally, our ultimate goal is to qualify the system for a space Technical Readiness Level of 5.
机译:光子检测是任何高能量天文仪器的中心元素。在许多任务中证明的一个经典设置是具有闪烁体的光电倍增管(PMTS)的组合,将输入的高能光子转换成可见光,这又转换在电脉冲中。虽然极其敏感和快速,PMTS具有庞大,脆弱的缺点,并且需要高达数千伏的高压电源。硅光电倍增管(SIPM)开发的最近技术进步使它们在基本上所有的应用中对PMTS提供了一个有希望的替代品。我们已经开始了研发计划,以评估使用SIPMS在高能量天文学领域中使用SIPM的应用。我们将从3个制造商提供我们对SIPMS的特征研究的结果。每个SIPM检测器已经在专用真空室内和低温内测试,以评估其在代表性空间环境中的性能。辐照测试计划了解SIPM对辐射损伤的敏感性。比较后,我们将选择基线检测器并设计特定的前端电子和机械系统。此外,我们计划开发低噪声电压,确保SIPM的稳定性并研究其与闪烁体的耦合。最后,我们的终极目标是获得系统的空间技术准备水平5。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号