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使用双光子吸收瞬态电流技术对中子、质子和伽马辐照硅探测器的研究。

Study of Neutron-, Proton-, and Gamma-Irradiated Silicon Detectors Using the Two-Photon Absorption-Transient Current Technique.

作者信息

Pape Sebastian, Fernández García Marcos, Moll Michael, Wiehe Moritz

机构信息

CERN, Esplanade des Particules 1, 1217 Meyrin, Switzerland.

Department of Physics-AG Kröninger, TU Dortmund University, 44227 Dortmund, Germany.

出版信息

Sensors (Basel). 2024 Aug 22;24(16):5443. doi: 10.3390/s24165443.

Abstract

The Two-Photon Absorption-Transient Current Technique (TPA-TCT) is a device characterisation technique that enables three-dimensional spatial resolution. Laser light in the quadratic absorption regime is employed to generate excess charge carriers only in a small volume around the focal spot. The drift of the excess charge carriers is studied to obtain information about the device under test. Neutron-, proton-, and gamma-irradiated p-type pad silicon detectors up to equivalent fluences of about 7 × 10 neq/cm2 and a dose of 186 Mrad are investigated to study irradiation-induced effects on the TPA-TCT. Neutron and proton irradiation lead to additional linear absorption, which does not occur in gamma-irradiated detectors. The additional absorption is related to cluster damage, and the absorption scales according to the non-ionising energy loss. The influence of irradiation on the two-photon absorption coefficient is investigated, as well as potential laser beam depletion by the irradiation-induced linear absorption. Further, the electric field in neutron- and proton-irradiated pad detectors at an equivalent fluence of about 7 × 10 neq/cm2 is investigated, where the space charge of the proton-irradiated devices appears inverted compared to the neutron-irradiated device.

摘要

双光子吸收瞬态电流技术(TPA-TCT)是一种能够实现三维空间分辨率的器件表征技术。在二次吸收区域的激光用于仅在焦点周围的小体积内产生过量电荷载流子。通过研究过量电荷载流子的漂移来获取有关被测器件的信息。研究了中子、质子和γ辐照的p型焊盘硅探测器,等效注量高达约7×10neq/cm2,剂量为186 Mrad,以研究辐照对TPA-TCT的影响。中子和质子辐照会导致额外的线性吸收,而γ辐照探测器中不会出现这种情况。额外的吸收与团簇损伤有关,并且吸收量根据非电离能量损失而变化。研究了辐照对双光子吸收系数的影响,以及辐照诱导的线性吸收对潜在激光束损耗的影响。此外,还研究了等效注量约为7×10neq/cm2的中子和质子辐照焊盘探测器中的电场,其中质子辐照器件的空间电荷与中子辐照器件相比呈现相反的情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e43/11359127/a6a0cb31d18c/sensors-24-05443-g001.jpg

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