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On-ground characterization of the Euclid low noise CCD273 sensor for precise galaxy shape measurements

机译:Euclid低噪声CCD273传感器的地面特性,用于精确的星系形状测量

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The VISible imaging instrument VIS is one of two instruments on board the Euclid telescope. The focal plane consists of 36 CCD273-84 sensors manufactured by the e2v technologies. The sensors are designed to provide a maximum charge transfer efficiency (CTE) to minimize distortions to source shapes. Each sensor undergoes a rigorous on-ground electro-optical testing at several stages of the mission to ensure that strict requirements are met before the launch of the spacecraft. This paper summarizes the commissioning of the Euclid CCD273 testing facility at the Mullard Space Science Laboratory (MSSL), the lead institute for VIS. The testing bench supports the measurements of the point spread function (PSF), system noise and the flat field evaluation. Accurate spot measurements are extremely important for the precise modelling and general understanding of an instrument’s PSF. We show the preliminary results of the optical characterization of the pre-development devices with a special interest in the measurements of the PSF at different illumination levels and in the VIS spectral range of 550–900 nm. Additionally, the influence of the on-ground testing environment and a dedicated readout electronics on the obtained images is taken into consideration.
机译:VISible成像仪器VIS是Euclid望远镜上的两种仪器之一。焦平面由e2v技术制造的36个CCD273-84传感器组成。这些传感器旨在提供最大的电荷转移效率(CTE),以最大程度地减小源形状的畸变。每个传感器在飞行任务的多个阶段均经过严格的地面光电测试,以确保在航天器发射前满足严格的要求。本文总结了VIS牵头机构Mullard太空科学实验室(MSSL)的Euclid CCD273测试设备的调试。测试台支持点扩展函数(PSF),系统噪声和平坦场评估的测量。准确的斑点测量对于精确建模和对仪器PSF的一般理解非常重要。我们展示了预开发设备的光学特性的初步结果,特别关注在不同照明水平和550-900 nm的VIS光谱范围内对PSF的测量。另外,还考虑了地面测试环境和专用读取电子设备对获得的图像的影响。

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