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Designing a Robust Kelvin Probe Setup Optimized for Long-Term Surface Photovoltage Acquisition

机译:设计针对长期表面光电压采集而优化的稳健的Kelvin探头设置

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摘要

We introduce a robust low-budget Kelvin probe design that is optimized for the long-term acquisition of surface photovoltage (SPV) data, especially developed for highly resistive systems, which exhibit—in contrast to conventional semiconductors—very slow photoinduced charge relaxation processes in the range of hours and days. The device provides convenient optical access to the sample, as well as high mechanical and electrical stability due to off-resonance operation, showing a noise band as narrow as 1 mV. Furthermore, the acquisition of temperature-dependent SPV transients necessary for SPV-based deep-level transient spectroscopy becomes easily possible. The performance of the instrument is demonstrated by recording long-term SPV transients of the ultra-slowly relaxing model oxide strontium titanate (SrTiO3) over 20 h.
机译:我们推出了一种坚固耐用的低成本开尔文探针设计,该探针设计针对长期采集表面光电压(SPV)数据进行了优化,特别是针对高电阻系统而开发的,与常规半导体相比,该系统表现出非常慢的光诱导电荷弛豫过程小时和天数的范围。该设备提供了方便的光学通道访问样品,以及由于失谐操作而具有的高机械和电稳定性,显示出窄至1 mV的噪声带。此外,获取基于SPV的深层瞬态光谱所必需的与温度相关的SPV瞬变变得很容易。通过记录超慢弛豫模型氧化物钛酸锶的长期SPV瞬变来证明该仪器的性能(SrTiO 3 )超过20小时。

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