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The GCT camera for the Cherenkov Telescope Array

机译:切伦科夫望远镜阵列的GCT相机

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The Gamma Cherenkov Telescope (GCT) is one of the designs proposed for the Small Sized Telescope (SST) section of the Cherenkov Telescope Array (CTA). The GCT uses dual-mirror optics, resulting in a compact telescope with good image quality and a large field of view with a smaller, more economical, camera than is achievable with conventional single mirror solutions. The photon counting GCT camera is designed to record the flashes of atmospheric Cherenkov light from gamma and cosmic ray initiated cascades, which last only a few tens of nanoseconds. The GCT optics require that the camera detectors follow a convex surface with a radius of curvature of 1 m and a diameter of ~35 cm, which is approximated by tiling the focal plane with 32 modules. The first camera prototype is equipped with multi-anode photomuln'pliers, each comprising an 8x8 array of 6x6 mm2 pixels to provide the required angular scale, adding up to 2048 pixels in total. Detector signals are shaped, amplified and digitised by electronics based on custom ASICs that provide digitisation at 1 GSample/s. The camera is self-triggering, retaining images where the focal plane light distribution matches predefined spatial and temporal criteria. The electronics are housed in the liquid-cooled, sealed camera enclosure. LED flashers at the corners of
机译:Gamma Cherenkov望远镜(GCT)是为Cherenkov望远镜阵列(CTA)的小型望远镜(SST)提出的设计之一。 GCT使用双镜光学元件,与传统的单镜解决方案相比,它具有体积更小,更经济的相机,从而带来了具有良好图像质量的紧凑型望远镜和更大的视野。光子计数GCT相机旨在记录来自伽玛射线和宇宙射线引发的级联的大气Cherenkov光的闪光,持续时间仅几十纳秒。 GCT光学器件要求摄像机检测器遵循凸面,该凸面的曲率半径为1 m,直径为〜35 cm,这可以通过将焦平面平铺32个模块来近似。第一个相机原型配备了多阳极光电倍增管,每个均包括一个8x8的6x6 mm2像素阵列,以提供所需的角度比例,总共达2048个像素。电子设备根据定制的ASIC对检测器信号进行整形,放大和数字化处理,这些定制ASIC以1 GSample / s的速度提供数字化。相机是自动触发的,会保留焦平面光分布与预定义的空间和时间标准匹配的图像。电子设备位于液体冷却的密封摄像机外壳中。角落处的LED闪光灯

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