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Mach-Zehnder interferometers in photonic crystals

机译:光子晶体中的Mach-Zehnder干涉仪

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Photonic crystal technology allows the creation of optical waveguides with low sharp-bending losses as well as ultra-low group velocity. This last property is particularly interesting to develop highly-compact optical devices based on the controlled modification of the optical phase of the signals traveling through the waveguides. Among these devices, the Mach-Zehnder interferometer acquires fundamental importance because it can be used as a building block of more complex optical devices and functionalities such as optical filters, wavelength demultiplexers, channels interleavers, intensity modulators, switches and optical gates. In this paper, the performance of a Mach-Zehnder interferometer consisting of two coupled-cavity waveguides with different lengths created in a two-dimensional photonic crystal is theoretically analyzed. We also provide simulation results using a finite-difference time-domain code that confirm the theoretical analysis. The main limitations in the performance of the structure are addressed and discussed.
机译:光子晶体技术允许创建具有低锐弯损耗以及超低群速度的光波导。基于对通过波导传播的信号的光相位的受控修改来开发高度紧凑的光学设备,后一特性特别有趣。在这些设备中,马赫曾德尔干涉仪具有根本的重要性,因为它可以用作更复杂的光学设备和功能的基础,例如光学滤波器,波长解复用器,通道交错器,强度调制器,开关和光闸。从理论上分析了二维光子晶体中由两个长度不同的耦合腔波导组成的马赫曾德尔干涉仪的性能。我们还提供了使用有限差分时域代码的仿真结果,这些结果证实了理论分析。解决并讨论了结构性能的主要限制。

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