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Electric Field and Current Transport Mechanisms in Schottky CdTe X-ray Detectors under Perturbing Optical Radiation

机译:扰动光辐射下肖特基CdTe X射线探测器的电场和电流传输机制

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摘要

Schottky CdTe X-ray detectors exhibit excellent spectroscopic performance but suffer from instabilities. Hence it is of extreme relevance to investigate their electrical properties. A systematic study of the electric field distribution and the current flowing in such detectors under optical perturbations is presented here. The detector response is explored by varying experimental parameters, such as voltage, temperature, and radiation wavelength. The strongest perturbation is observed under 850 nm irradiation, bulk carrier recombination becoming effective there. Cathode and anode irradiations evidence the crucial role of the contacts, the cathode being Ohmic and the anode blocking. In particular, under irradiation of the cathode, charge injection occurs and peculiar kinks, typical of trap filling, are observed both in the current-voltage characteristic and during transients. The simultaneous access to the electric field and the current highlights the correlation between free and fixed charges, and unveils carrier transport/collection mechanisms otherwise hidden.
机译:肖特基CdTe X射线探测器具有出色的光谱性能,但不稳定。因此,研究它们的电学特性具有极其重要的意义。本文介绍了在光学扰动下这种探测器中的电场分布和电流的系统研究。通过改变实验参数(例如电压,温度和辐射波长)来探索探测器的响应。在850 nm的辐射下观察到最强的扰动,在那里的载流子复合变得有效。阴极和阳极的辐射证明了触点的关键作用,阴极是欧姆的,阳极被阻挡。特别地,在阴极的照射下,发生电荷注入,并且在电流-电压特性和瞬变期间都观察到了典型的陷阱填充的特殊扭结。电场和电流的同时进入突显了自由电荷和固定电荷之间的相关性,并揭示了其他隐藏的载流子传输/收集机制。

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