首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Gamma radiation induced space charge sign inversion and re-inversion in p-type MCZ Si detectors and in proton-irradiated n-type MCZ Si detectors
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Gamma radiation induced space charge sign inversion and re-inversion in p-type MCZ Si detectors and in proton-irradiated n-type MCZ Si detectors

机译:γ辐射在p型MCZ Si探测器和质子辐照n型MCZ Si探测器中引起的空间电荷符号反转和再反转

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摘要

Positive space charge build-up was observed in proton—and neutron—irradiated high-resistivity magnetic Czochralski (MCZ) n-type Si detectors after gamma radiation. Space charge sign re-inversion (SCSRI) from negative to positive was achieved at the high dose of 454 Mrad in a low-fluence proton irradiated MCZ Si detector. No SCSRI has been observed yet for low-fluence neutron-irradiated MCZ Si detectors at the highest dose in this study (662 Mrad), but positive space charge is building up, and SCSRI is expected at higher doses. Up to the highest dose in this study, the double junction or double peak electric field distribution is still preserved even after SCSRI. No SCSRI was observed in control FZ Si detectors. Space charge sign inversion was also observed in high-resistivity as-processed MCZ p-type Si detectors after gamma radiation.
机译:在质子和中子辐照的高电阻率磁Czochralski(MCZ)n型Si检测器中,在伽玛射线辐照后观察到正电荷积累。在低通量质子辐照的MCZ Si检测器中,以454 Mrad的高剂量实现了从负到正的空间电荷符号反转(SCSRI)。在这项研究中,最高剂量(662 Mrad)的低剂量中子辐照MCZ Si探测器还没有观察到SCSRI,但是正空间电荷正在积累,并且预计更高剂量时会出现SCSRI。直到本研究中的最高剂量,即使在SCSRI之后,双结或双峰电场分布仍然得以保留。在对照FZ Si探测器中未观察到SCSRI。在伽马辐射后,在高电阻率加工的MCZ p型Si检测器中也观察到空间电荷符号反转。

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