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Challenges in photon-starved space astronomy in a harsh radiation environment using CCDs`

机译:使用CCDS`的苛刻辐射环境中的光子饥饿空间天文学的挑战

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The Charge Coupled Device (CCD) has a long heritage for imaging and spectroscopy in many space astronomy missions. However, the harsh radiation environment experienced in orbit creates defects in the silicon that capture the signal being transferred through the CCD. This radiation damage has a detrimental impact on the detector performance and requires carefully planned mitigation strategies. The ESA Gaia mission uses 106 CCDs, now orbiting around the second Lagrange point as part of the largest focal-plane ever launched. Following readout, signal electrons will be affected by the traps generated in the devices from the radiation environment and this degradation will be corrected for using a charge distortion model. ESA's Euclid mission will contain a focal plane of 36 CCDs in the VIS instrument. Moving further forwards, the World Space Observatory (WSO) UV spectrographs and the WFIRST-AFTA coronagraph intend to look at very faint sources in which mitigating the impact of traps on the transfer of single electron signals will be of great interest. Following the development of novel experimental and analysis techniques, one is now able to study the impact of radiation on the detector to new levels of detail. Through a combination of TCAD simulations, defect studies and device testing, we are now probing the interaction of single electrons with individual radiation-induced traps to analyse the impact of radiation in photon-starved applications.
机译:电荷耦合器件(CCD)在许多空间天文任务中具有漫长的成像和光谱遗产。然而,在轨道中经历的苛刻辐射环境在捕获通过CCD传送的信号的硅中产生缺陷。这种辐射损坏对探测器性能有害影响,并且需要仔细计划的缓解策略。 ESA Gaia Mission使用106个CCD,现在围绕第二个拉格朗日点轨道,作为最大的焦点飞机的一部分。在读出之后,信号电子将受到来自辐射环境中的器件中产生的陷阱的影响,并且将使用电荷失真模型来校正该劣化。 ESA的EUCLID任务将在VIS仪器中包含36个CCD的焦平面。进一步前进,世界空间观测所(WSO)紫外光谱仪和WFIRST-AFTA调节件旨在看看非常微弱的来源,在这种情况下减轻陷阱对单个电子信号的转移的影响将是极大的兴趣。在开发新的实验和分析技术之后,现在可以研究辐射对探测器的影响到新的细节。通过TCAD模拟,缺陷研究和设备测试的组合,我们现在正在探测单个电子与个体辐射引起的陷阱的相互作用,分析辐射在光子饥饿的应用中的影响。

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