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超密、深亚波长纳米线阵列光伏作为工程光学薄膜。

Ultradense, deep subwavelength nanowire array photovoltaics as engineered optical thin films.

机构信息

Kavli Nanoscience Institute and Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, United States.

出版信息

Nano Lett. 2010 Nov 10;10(11):4429-34. doi: 10.1021/nl102199b.

Abstract

A photovoltaic device comprised of an array of 20 nm wide, 32 nm pitch array of silicon nanowires is modeled as an optical material. The nanowire array (NWA) has characteristic device features that are deep in the subwavelength regime for light, which permits a number of simplifying approximations. Using photocurrent measurements as a probe of the absorptance, we show that the NWA optical properties can be accurately modeled with rigorous coupled-wave analysis. The densely structured NWAs behave as homogeneous birefringent materials into the ultraviolet with effective optical properties that are accurately modeled using the dielectric functions of bulk Si and SiO2, coupled with a physical model for the NWA derived from ellipsometry and transmission electron microscopy.

摘要

由 20nm 宽、32nm 间距的硅纳米线阵列组成的光伏器件被建模为光学材料。该纳米线阵列 (NWA) 具有特征器件特征,其对光的波长处于亚波长深区,这允许进行许多简化近似。通过使用光电流测量作为吸收率的探针,我们表明可以使用严格的耦合波分析准确地对 NWA 光学性质进行建模。密集结构的 NWAs 在紫外线范围内表现为各向同性双折射材料,其有效光学性质可以使用体硅和 SiO2 的介电函数以及从椭圆偏振和透射电子显微镜得出的 NWA 物理模型来准确建模。

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