量子排除的表面被动化:关于在太空中的delta-doped CCD和CMOS图像传感器的量子效率和稳定性
Michael E Hoenk1, April D Jewell1, Gillian Kyne1
1Jet Propulsion Laboratory, California Institute of Technology, Pasadena, CA 91109, USA.
Sensors (Basel, Switzerland)
|December 23, 2023
概括
辐射硬化探测器对于太空任务至关重要. 戴尔塔合传感器表现出卓越的稳定性和准确性,克服了对系外行星科学和天文学的辐射诱导损害.
科学领域:
- 半导体物理 半导体物理
- 探测器技术 探测器技术
- 材料科学是一种材料科学.
背景情况:
- 背光探测器遭受辐射诱导的损伤和不稳定性.
- 这种性能下降会影响NASA和商业应用.
- 稳定,辐射硬化表面被动化对于可靠的探测器运行至关重要.
研究的目的:
- 基于Si-SiO2接口和氧化物陷密度,开发探测器量子效率 (QE) 的模型.
- 在探测器中分析紫外线引起的表面损伤机制.
- 探索稳定,辐射硬化表面被动化的要求.
主要方法:
- 模拟探测器量子效率 (QE) 作为接口和氧化物陷密度的函数.
- 在暴露于紫外线辐射之前,期间和之后获取QE数据.
- 研究紫外线引起的表面损伤和稳定性的物理和化学机制.
主要成果:
- QE是作为Si-SiO2接口和氧化物陷密度的函数建模的.
- 紫外线辐射会造成表面损伤,影响表面电荷,QE和稳定性.
- 戴尔塔合的CCD和CMOS图像传感器显示了对电离辐射的独特硬化.
结论:
- 戴尔塔合传感器提供了增强的稳定性和光度准确性.
- 这些硬化探测器符合NASA对系外行星科学和时间域天文学的要求.
- 开发的QE模型有助于理解和改善辐射硬化探测器的性能.
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