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The Wide Field Imager Instrument for Athena

机译:雅典娜宽视场成像仪

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The WFI (Wide Field Imager) instrument is planned to be one of two complementary focal plane cameras on ESA's next X-ray observatory Athena. It combines unprecedented survey power through its large field of view of 40 amin × 40 amin together with excellent count rate capability (≥ 1 Crab). The energy resolution of the silicon sensor is state-of-the-art in the energy band of interest from 0.2 keV to 15 keV, e.g. the full width at half maximum of a line at 7 keV will be ≤ 170 eV until the end of the nominal mission phase. This performance is accomplished by using DEPFET active pixel sensors with a pixel size of 130 μm × 130 μm well suited to the on-axis angular resolution of 5 arcsec half energy width (HEW) of the mirror system. Each DEPFET pixel is a combined sensor-amplifier structure with a MOSFET integrated onto a fully depleted 450 μm thick silicon bulk. Two detectors are planned for the WFI instrument: A large-area detector comprising four sensors with a total of 1024 × 1024 pixels and a fast detector optimized for high count rate observations. This high count rate capable detector permits for bright point sources with an intensity of 1 Crab a throughput of more than 80% and a pile-up of less than 1%. The fast readout of the DEPFET pixel matrices is facilitated by an ASIC development, called VERITAS-2. Together with the Switcher-A, a control ASIC that allows for operation of the DEPFET in rolling shutter mode, these elements form the key components of the WFI detectors. The detectors are surrounded by a graded-Z shield, which has in particular the purpose to avoid fluorescence lines that would contribute to the instrument background. Together with ultra-thin coating of the sensor and particle identification by the detector itself, the particle induced background shall be minimized in order to achieve the scientific requirement of a total instrumental background value smaller than 5 × 10~(-3) cts/cm~2/s/keV. Each detector has its dedicated detector electronics (DE) for supply and data acquisition. Due to the high frame rate in combination with the large pixel array, signal correction and event filtering have to be done on-board and in real-time as the raw data rate would by far exceed the feasible telemetry rate. The data streams are merged and compressed in the Instrument Control and Power distribution Unit (ICPU). The ICPU is the data, control and power interface of the WFI to the Athena spacecraft. The WFI instrument comprises in addition a filter wheel (FW) in front of the camera as well as an optical stray-light baffle. In the current phase A of the Athena project, the technology development is performed. At its end, breadboard models will be developed and tested to demonstrate a technical readiness level (TRL) of at least 5 for the various WFI subsystems before mission adoption in 2020.
机译:WFI(宽视场成像仪)仪器计划成为ESA下一个X射线观测台雅典娜的两个互补焦平面相机之一。它通过其40 amin×40 amin的大视野结合了前所未有的测量能力,并具有出色的计数率功能(≥1个螃蟹)。硅传感器的能量分辨率在0.2 keV至15 keV(例如1 keV)的目标能带中是最新的。直到标称任务阶段结束,线路在7 keV处的一半的最大全宽将≤170 eV。通过使用像素尺寸为130μm×130μm的DEPFET有源像素传感器,非常适合反射镜系统的5 arcsec半能量宽度(HEW)的轴上角分辨率,可以实现此性能。每个DEPFET像素都是一个组合的传感器-放大器结构,其MOSFET集成在一块完全耗尽的450μm厚的硅块上。 WFI仪器计划使用两个检测器:一个大面积检测器,包括四个传感器,总共有1024×1024像素;一个快速检测器,针对高计数率观测进行了优化。这种具有高计数率的检测器允许亮度为1 Crab的亮点光源,吞吐量大于80%,堆积小于1%。称为VERITAS-2的ASIC开发促进了DEPFET像素矩阵的快速读取。这些元件与控制ASIC Switcher-A(允许DEPFET在滚动快门模式下运行)一起构成WFI检测器的关键组件。检测器周围环绕着Z形防护罩,该防护罩的主要目的是避免会影响仪器背景的荧光线。结合传感器的超薄涂层和检测器本身的颗粒识别,应最小化颗粒诱导的背景,以达到科学的要求,即仪器总背景值小于5×10〜(-3)cts / cm 〜2 / s / keV。每个探测器都有其专用的探测器电子设备(DE),用于供电和数据采集。由于高帧速率与大像素阵列相结合,必须在板上实时进行信号校正和事件过滤,因为原始数据速率将远远超过可行的遥测速率。数据流在仪器控制和配电单元(ICPU)中合并和压缩。 ICPU是WFI到Athena航天器的数据,控制和电源接口。 WFI仪器还包括位于摄像机前面的滤光轮(FW)和光学杂散光挡板。在雅典娜项目的当前阶段A中,进行了技术开发。最终,将开发和测试面包板模型,以证明在2020年任务采用之前,各个WFI子系统的技术准备水平(TRL)至少为5。

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