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Optical diode using nonlinear polystyrene ring resonators in two-dimensional photonic crystal structure

机译:二维光子晶体结构中使用非线性聚苯乙烯环形谐振器的光电二极管

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摘要

An optical diode that uses nonlinear ring resonators in 2D photonic crystal is numerically simulated by using the finite-difference time-domain (FDTD) method. Nonlinear polystyrene is used as the Kerr medium forming ring resonators. The operating wavelength of the optical diode is considered to be the coupling wavelength at which light couples efficiently from waveguide to ring resonator, which is also equal to the average of the resonant wavelengths of the two resonators considered in the proposed structure. For both forward and backward propagation, the characteristics of the proposed optical diode are similar to those of an electronic diode. FDTD simulation is done using the MEEP package, which exhibits the desired results.
机译:通过使用有限差分时域(FDTD)方法,对在2D光子晶体中使用非线性环形谐振器的光学二极管进行了数值模拟。非线性聚苯乙烯用作形成环共振器的Kerr介质。光二极管的工作波长被认为是光从波导有效耦合到环形谐振器的耦合波长,也等于在所提出的结构中考虑的两个谐振器的谐振波长的平均值。对于正向和反向传播,所提出的光学二极管的特性与电子二极管的特性相似。 FDTD仿真是使用MEEP软件包完成的,该软件包具有所需的结果。

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