论文标题

开发牛群量热仪双读的照片二极管子系统

Development of the photo-diode subsystem for the HERD calorimeter double-readout

论文作者

Adriani, O., Antonelli, M., Basti, A., Berti, E., Betti, P., Bigongiari, G., Bonechi, L., Bongi, M., Bonvicini, V., Bottai, S., Brogi, P., Castellini, G., Checchia, C., Casaus, J., Cui, X., Dong, Y., D'Alessandro, R., Detti, S., Giovacchini, F., Finetti, N., Maestro, P., Marrocchesi, P. S., Liu, X., Marin, J., Martinez, G., Mori, N., Pacini, L., Papini, P., Pizzolotto, C., Ricciarini, S., Spillantini, P., Starodubtsev, O., Stiaccini, L., Tang, Z., Tiberio, A., Vannuccini, E., Velasco, M., Wang, R., Wang, Z., Xu, M., Zampa, G., Zampa, N., Zhang, L.

论文摘要

宇宙射线单个光谱的测量提供了有关天文粒子的起源和传播的独特信息。由于当前空间实验的接受程度有限,只有基于地面的实验才能观察到“膝盖”区域周围的质子和核​​。借助创新的设计,高能宇宙辐射检测(HERD)设施将允许直接观察到该能量区域:该仪器主要基于一个分割的3D分割,各向同性和均匀的热量表,可以正常地测量每个方向的颗粒能量,并由大约7500 Lyso Cobicic Cobic Cobic Crystals制成。闪烁光的读出是使用两个独立的系统完成的:第一个系统基于与加强科学CMOS摄像机耦合的波长变化纤维,第二个是由两个具有不同活性区域连接到自定义前端电子设备的活性区域的照片二极管制成的。该照片二极管系统旨在实现巨大的动态范围,大于$ 10^7 $,同时具有较小的功耗,每个频道的兆瓦很少。由于信噪比良好,还可以保证使用非相互作用和淋浴颗粒的信号,可以通过使用非相互作用和淋浴颗粒的信号。在本文中,讨论了当前的设计和通过光二极管读出系统的多个测试获得的性能。

The measurement of cosmic-ray individual spectra provides unique information regarding the origin and propagation of astro-particles. Due to the limited acceptance of current space experiments, protons and nuclei around the "knee" region ($\sim1\ PeV$) can only be observed by ground based experiments. Thanks to an innovative design, the High Energy cosmic-Radiation Detection (HERD) facility will allow direct observation up to this energy region: the instrument is mainly based on a 3D segmented, isotropic and homogeneous calorimeter which properly measures the energy of particles coming from each direction and it will be made of about 7500 LYSO cubic crystals. The read-out of the scintillation light is done with two independent systems: the first one based on wave-length shifting fibers coupled to Intensified scientific CMOS cameras, the second one is made of two photo-diodes with different active areas connected to a custom front-end electronics. This photo-diode system is designed to achieve a huge dynamic range, larger than $10^7$, while having a small power consumption, few mW per channel. Thanks to a good signal-to-noise ratio, the capability of a proper calibration, by using signals of both non-interacting and showering particles, is also guaranteed. In this paper, the current design and the performance obtained by several tests of the photo-diode read-out system are discussed.

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