首页> 外文会议>SPIE Astronomical Telescopes + Instrumentation Conference >A magnetic electron repeller to improve the ATHENA/WFI background level
【24h】

A magnetic electron repeller to improve the ATHENA/WFI background level

机译:磁性电子推斥极器,可提高ATHENA / WFI背景水平

获取原文

摘要

The WFI is a DEPFET-based device developed at MPE as one of the two focal plane instruments for the next large ESA mission for high energy astrophysics ATHENA. The expected level of instrumental background induced by the radiation environment in space is one of the parameters driving the camera design and it is required to be below 510~(-3) cts/cm~2/sec/keV to enhance some of the unique observing capabilities of this detector. Background reduction can be obtained in a passive way by optimizing the detector shielding specifications (e.g. materials, thicknesses) and discarding frame regions affected by X-ray-like counts. In principle, a higher rejection efficiency could be achieved with an active anticoincidence system surrounding the detector, in practice this cannot be done as it would make the camera readout very complicated and introduce dead-time. In this proceeding we discuss how a passive shielding against soft electrons with efficiency comparable to that of an active anticoincidence and no dead-time issue could be obtained by means of permanent magnets. We present the concept and a very preliminary feasibility study conducted in the framework of AHEAD and demonstrate theoretically the effectiveness of this solution. Nevertheless, an actual implementation would have as drawbacks an increased mass of the camera due to the presence of magnets and a potentially disturbing residual magnetic field in the detector environment.
机译:WFI是在MPE开发的基于DEPFET的设备,是下一个大型ESA任务的两个焦平面仪器之一,高能量天体物理学雅典娜。空间中辐射环境引起的预期仪器背景是驱动相机设计的参数之一,需要低于510〜(-3)CTS / cm〜2 /秒/ kev,以增强一些独特的唯一观察该探测器的能力。通过优化检测器屏蔽规范(例如材料,厚度)和丢弃受X射线状计数影响的框架区域,可以以被动方式获得背景。原则上,通过围绕探测器的活跃的抗煎型系统可以实现更高的抑制效率,实际上这是不能这样做的,因为它会使相机读出非常复杂和引入死宿。在此,我们讨论如何通过永磁体获得与活性抗渗透的效率与效率相当的效率的被动屏蔽。我们介绍了在未来框架中进行的概念和非常初步的可行性研究,从理论上证明了这种解决方案的有效性。然而,由于存在磁体的存在和检测器环境中的可能扰乱的剩余磁场,实际实现将具有增加的相机质量增加。

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