The silicon model photonic structure for a full-function thermal photodetector

K. Andrieieva, L. Karachevtseva, K. P. Konin, A. Liptuga, O. Lytvynenko, D. V. Morozovska
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Abstract

The out-of-plane optical properties of a combined one-two-dimensional comb-type photonic structure based on macroporous silicon under illumination with polarized normally incident light have been experimentally investigated. Technologically simple quasi-periodic structure with parallel air grooves in the form of mutually overlapping macropores (i.e., one-dimensional air/Si type structure) together with macropores arbitrarily distributed over the crystal surface (two-dimensional air/Si structure) was studied in comparison with the calculated one-dimensional periodic metal lattice on silicon. It is shown that this combined air/Si photonic structure has significant polarization selectivity and can serve as a basis for developing the full-function out-of-plane thermal photodetector on macroporous silicon.
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全功能热光电探测器的硅模型光子结构
实验研究了大孔硅复合一维梳型光子结构在偏振光照射下的面外光学特性。研究了具有相互重叠的大孔(即一维空气/硅型结构)和任意分布在晶体表面的大孔(二维空气/硅结构)形式的平行空气槽的技术简单准周期结构,并与硅上计算的一维周期性金属晶格进行了比较。结果表明,这种空气/硅复合光子结构具有明显的极化选择性,可作为开发大孔硅上全功能面外热探测器的基础。
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