论文标题

带有量子钻石显微镜的硅光伏设备中的成像电流路径

Imaging current paths in silicon photovoltaic devices with a quantum diamond microscope

论文作者

Scholten, S. C., Abrahams, G. J., Johnson, B. C., Healey, A. J., Robertson, I. O., Simpson, D. A., Stacey, A., Onoda, S., Ohshima, T., Kho, T. C., Michel, J. Ibarra, Bullock, J., Hollenberg, L. C. L., Tetienne, J. -P.

论文摘要

钻石中含氮中心的磁成像,也称为量子钻石显微镜,已成为一种有用的技术,用于在固态设备中电荷电流的空间映射。在这项工作中,我们研究了光伏(PV)设备的应用,其中电流是由光诱导的。我们开发了广阔的氮 - 视牙显微镜,该显微镜可以独立刺激和测量PV设备,并在一系列原型晶体硅PV设备上测试我们的系统。我们首先演示了由聚焦激光点照亮的自定义PV设备的微尺尺度矢量磁场成像,从而揭示了短路和开路条件下的内部电流路径。然后,我们演示了相互互动的太阳能电池中光电流的时间分辨成像,以微秒分辨率检测到电流的堆积以及随后的衰减。这项工作提出了一个通用且易于访问的分析平台,该平台可能会在新兴PV技术的研究中找到明显的应用。

Magnetic imaging with nitrogen-vacancy centers in diamond, also known as quantum diamond microscopy, has emerged as a useful technique for the spatial mapping of charge currents in solid-state devices. In this work, we investigate an application to photovoltaic (PV) devices, where the currents are induced by light. We develop a widefield nitrogen-vacancy microscope that allows independent stimulus and measurement of the PV device, and test our system on a range of prototype crystalline silicon PV devices. We first demonstrate micrometer-scale vector magnetic field imaging of custom PV devices illuminated by a focused laser spot, revealing the internal current paths in both short-circuit and open-circuit conditions. We then demonstrate time-resolved imaging of photocurrents in an interdigitated back-contact solar cell, detecting current build-up and subsequent decay near the illumination point with microsecond resolution. This work presents a versatile and accessible analysis platform that may find distinct application in research on emerging PV technologies.

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