论文标题
H4RG-15的表征,性能和操作方面附近的红外探测器
Characterisation, performance, and operational aspects of the H4RG-15 near infrared detectors for the MOONS instrument
论文作者
论文摘要
卫星是使用大约1000个纤维同时波长范围为0.6-1.8微米的ESO VLT的多对象光谱仪。它使用四个Teledyne Imaging系统H4RG-15 4K x 4K检测器,其中两个较长波段(YJ和H)的截止材料为2.5 $ $ m。由于光谱仪利用了非常快速的施密特摄像头设计,因此探测器位于光束中,因此需要开发一种新型的64通道低温差异性高温前置放大器,以最小化光学足迹,以最大程度地报告。我们已经在从90K到40K的一系列温度下操作了工程级H4RG检测器,我们将报告较低操作温度的优势。我们已经完成了完整的持久分析,并能够很好地对其进行建模,并将在我们的数据管道中为其提供更正。我们还配置了可用于未盖和缓冲输出的检测器,并报告两种输出类型之间的性能差异。我们还看到了检测器类型的一些编程问题,并将在此工作中报告我们的工作,我们还将描述使用列 - 删除功能和行跳过以最大程度地减少PED效果的使用。我们还测量了每次阅读和报告的电荷注入,同样,我们还测量了检测器不同区域的像素间电容。我们将介绍所有这些结果以及该检测器家族的完整性能特征的摘要。
MOONS is a multi-object spectrograph for the ESO VLT covering a simultaneous wavelength range of 0.6-1.8 microns using approximately 1000 fibres. It uses four Teledyne Imaging Systems H4RG-15 4K x 4K detectors with 2.5 $μ$m cut-off material for the two longer wavebands (YJ and H). Since the spectrographs utilize an extremely fast modified Schmidt camera design, then the detectors are situated in the optical beam and hence required the development of a novel 64- channel cryogenic differential cryogenic preamplifier, minimized for optical footprint which will be reported on. We have operated the Engineering Grade H4RG detector at a range of temperatures from 90K to 40K and we will report on the advantages of the lower operational temperature. We have completed a full persistence analysis and are able to model it reasonably well and will offer a correction for it in our data pipeline. We have also configured the detector for use with both unbuffered and buffered outputs and report on the differences in performance between the two output types. We have also seen some programming issues with the detector type and will report on our work-around for this, we will also describe the use of the column-deselect feature and row skipping to minimize the effects of PEDs. We have also measured charge injection per read and report on this, likewise we have also measured the inter-pixel capacitance in different regions of the detector. We will present all these results together with a summary of the complete performance characteristics of this detector family.