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Magnetically tunable enhanced absorption of circularly polarized light in graphene-based 1D photonic crystals

机译:基于石墨烯的1D光子晶体中的磁性可调增强吸收圆偏振光

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摘要

We theoretically investigate the magnetic-field-induced terahertz absorption enhancement of a graphene-based one-dimensional photonic crystal using the 4 x 4 transfer matrix method for the circular polarization of light. The results show that the magnetically tunable absorption of the structure depends on the circular polarization state, magnetic circular dichroism, and, interestingly, absorption behaviors of right-handed and left-handed circularly polarized light interchange by changing the direction of the magnetic field. These properties can be used to design the circular-polarization-based sensors. (C) 2017 Optical Society of America
机译:理论上,从图4×4转移矩阵法用于光的圆极化,理论上地研究了基于石墨烯的一维光子晶体的磁场引起的太赫兹吸收增强。 结果表明,通过改变磁场的方向,结构的磁性可调谐吸收取决于圆偏振状态,磁性圆形二色性,磁性圆形二色性,磁圆形二色性,磁圆形二色性,以及右手右手圆偏振光互换的吸收行为。 这些属性可用于设计基于圆极化的传感器。 (c)2017年光学学会

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