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Nano-Structured Metal-Semiconductor-Metal Photo-Detectors for Enhanced Light Absorption

机译:用于增强光吸收的纳米结构金属半导体 - 金属光电探测器

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Nano-structured metal-semiconductor-metal photodetectors (MSM-PDs) are enable to assist in future high-speed communication devices achieving high responsivity-bandwidth characteristics. Finite difference time-domain (FDTD) method is used to calculate the light absorption enhancement of nano-grating assisted MSM-PDs near the design wavelength by varying detector's geometrical parameters in comparison with a conventional device. The substrate containing apertures and the nanogratings are optimized in thickness to trigger extraordinary optical transmission. Besides, it demonstrates how the coupling condition satisfies the oscillating charge densities evolution to the surface plasmon polaritons under illumination of polarized light. The simulation results confirm that the light absorption enhancement of nanograting assisted MSM-PDs is ~13.5-times better than the conventional MSM-PDs.
机译:纳米结构金属 - 半导体 - 金属光电探测器(MSM-PDS)可以帮助实现实现高响应性带宽特性的未来高速通信设备。有限差分时间域(FDTD)方法用于通过不同的探测器的几何参数与传统装置相比,计算设计波长附近纳米光栅辅助MSM-PD的光吸收增强。含有孔和纳米格拉特的基板以厚度优化以触发非凡的光学传输。此外,它表明耦合条件如何满足在偏振光的照明之下的表面等离子体极性振荡的振荡电荷密度进化。仿真结果证实,纳入辅助MSM-PD的光吸收增强比传统的MSM-PD为〜13.5倍。

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