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Symmetric metal nanogratings and horned shape extended pads to enhance light transmission of plasmonic metal-semiconductor-metal photodetector

机译:对称的金属纳米光栅和有角的扩展焊盘,可增强等离子体金属-半导体-金属光电探测器的透光率

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摘要

In this work new plasmonic assisted metal-semiconductor-metal photodetectors are presented. The new devices incorporate symmetric triangular and elliptic gratings, subwavelength slit and metal pads that is extended into the active layer made up of GaAs. Simulations are carried out using the 2-D finite difference time domain method. It is shown that with elliptic nanogratings and optimized horned shape extended metal pads, light transmission through the subwavelength slit of the proposed structure is 17 times that of a plasmonic photodetector consisting of only a subwavelength slit at the middle of the metal contacts with no gratings. It is also demonstrated that the triangular shaped nanogratings fixes the peak transmission around the desired wavelength of 830 nm, while the rectangular and elliptic counterparts red shift the maximum transmission to about 900 nm.
机译:在这项工作中,提出了一种新的等离子体辅助金属-半导体-金属光电探测器。新器件结合了对称的三角形和椭圆形光栅,亚波长狭缝和金属焊盘,这些焊盘扩展到由GaAs构成的有源层中。使用二维有限差分时域方法进行仿真。结果表明,采用椭圆形纳米光栅和优化的角状扩展金属焊盘,通过所提出结构的亚波长狭缝的光透射率是等离子光电探测器的17倍,该等离子体探测器仅由在金属触点中间没有光栅的亚波长狭缝组成。还证明了三角形纳米光栅将峰值透射率固定在所需的830 nm波长附近,而矩形和椭圆形对应物将最大透射率移至大约900 nm。

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