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Design analysis of light absorption for monolayer molybdenum selenide based on layered structure

机译:基于分层结构的单层硒化钼光吸收设计分析

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摘要

A multi-layered structure of monolayer molybdenum selenide (MoSe2) with a dielectric Bragg grating, a spacer and a metal Ag film on SiO2 substrate has been proposed to achieve tunable and enhanced light absorption in two-dimensional MoSe2. Numerical simulation results demonstrate that light absorption of monolayer MoSe2 can reach as high as 81% due to the excitation of Tamm plasmon mode in multi-layered structure. The operating wavelength and efficiency of absorption peak can be easily tuned by changing the dielectric layer thickness and period number of Bragg grating, the position of MoSe2, and incident light angle, which would provide an efficient approach for the performance improvement of 2D MoSe2-based optoelectronic devices.
机译:为了在二维MoSe2中实现可调和增强的光吸收,已经提出了在SiO2衬底上具有电介质布拉格光栅,隔离层和金属银膜的单层硒化钼(MoSe2)的多层结构。数值模拟结果表明,由于Tamm等离子体激元模在多层结构中的激发,单层MoSe2的光吸收可以达到81%。通过改变电介质层的厚度和布拉格光栅的周期数,MoSe2的位置和入射光角度,可以轻松地调节工作波长和吸收峰的效率,这将为基于2D MoSe2的性能改进提供一种有效的方法光电设备。

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