论文标题

小框:低噪声快速X射线成像检测器的多功能开发和表征的工具

Tiny-box: A tool for the versatile development and characterization of low noise fast X-ray imaging detectors

论文作者

Chattopadhyay, Tanmoy, Herrmann, Sven, Allen, Steven, Hirschman, Jack, Morris, Glenn, Bautz, Marshall, Malonis, Andrew, Foster, Richard, Prigozhin, Gregory, Craig, Dave, Burke, Barry

论文摘要

X射线电荷耦合器件(CCD)一直是过去四分之一世纪软X射线天文仪器的主力军。它们提供广泛的能量响应,极低的电子读取噪声以及软X射线中的良好能量分辨率。这些属性,以及现代CCD的大型阵列和小像素尺寸,使它们成为了下一代天文学X射线任务的潜在候选者,配备了大型收集区域,高角度分辨率和广泛的视野,从而可以观察到微弱的,散布和高红色Shift X射线X射线宇宙。但是,如此高的收集区域(大约30倍Chandra)要求这些探测器的读数比当前的CCD更快,以避免饱和和堆积效果。在这种情况下,斯坦福大学和麻省理工学院启动了快速读数X射线相机的开发。作为此开发的工具,我们设计了一个快速读数,低噪声电子板(旨在以每秒5兆像素的数据速率工作)以及STA Archon控制器,以读取512 x 512 CCD(来自MIT Lincoln Laboratory)。这种多功能设置使我们能够研究许多参数和操作条件,包括数字成型选项。在本文中,我们描述了表征测试站,读取电子设备的概念和开发以及仿真结果。我们还报告了该设置的读取噪声,能量分辨率和其他参数的首次测量。虽然这是一个原型,但我们计划将来使用专用的ASIC读取系统使用更大的多节点CCD设备,以使CCD的更快,并行读数更快。

X-ray Charge Coupled Devices (CCDs) have been the workhorse for soft X-ray astronomical instruments for the past quarter century. They provide broad energy response, extremely low electronic read noise, and good energy resolution in soft X-rays. These properties, along with the large arrays and small pixel sizes available with modern-day CCDs, make them a potential candidate for next generation astronomical X-ray missions equipped with large collecting areas, high angular resolutions and wide fields of view, enabling observation of the faint, diffuse and high redshift X-ray universe. However, such high collecting area (about 30 times Chandra) requires these detectors to have an order of magnitude faster readout than current CCDs to avoid saturation and pile up effects. In this context, Stanford University and MIT have initiated the development of fast readout X-ray cameras. As a tool for this development, we have designed a fast readout, low noise electronics board (intended to work at a 5 Megapixel per second data rate) coupled with an STA Archon controller to readout a 512 x 512 CCD (from MIT Lincoln Laboratory). This versatile setup allows us to study a number of parameters and operation conditions including the option for digital shaping. In this paper, we describe the characterization test stand, the concept and development of the readout electronics, and simulation results. We also report the first measurements of read noise, energy resolution and other parameters from this set up. While this is very much a prototype, we plan to use larger, multi-node CCD devices in the future with dedicated ASIC readout systems to enable faster, parallel readout of the CCDs.

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