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Reduction of surface leakage current by surface passivation of CdZn Te and other materials using hyperthermal oxygen atoms

机译:通过使用高温氧原子对CdZn Te和其他材料进行表面钝化来减少表面泄漏电流

摘要

Reduction of surface leakage current by surface passivation of Cd1-xZnxTe and other materials using hyperthermal oxygen atoms. Surface effects are important in the performance of CdZnTe room-temperature radiation detectors used as spectrometers since the dark current is often dominated by surface leakage. A process using high-kinetic-energy, neutral oxygen atoms (3 eV) to treat the surface of CdZnTe detectors at or near ambient temperatures is described. Improvements in detector performance include significantly reduced leakage current which results in lower detector noise and greater energy resolution for radiation measurements of gamma- and X-rays, thereby increasing the accuracy and sensitivity of measurements of radionuclides having complex gamma-ray spectra, including special nuclear materials.
机译:通过使用高温氧原子对Cd 1-x Zn x Te和其他材料进行表面钝化来减少表面泄漏电流。表面效应对于用作光谱仪的CdZnTe室温辐射探测器的性能很重要,因为暗电流通常由表面泄漏决定。描述了一种使用高动能中性氧原子(3 eV)在或接近环境温度下处理CdZnTe检测器表面的方法。检测器性能的改善包括显着降低泄漏电流,从而降低了检测器的噪声,并提高了对伽马射线和X射线辐射测量的能量分辨率,从而提高了具有复杂伽马射线光谱(包括特殊核素)的放射性核素的测量精度和灵敏度材料。

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