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Optimization of 2??2 MZI electro-optic switch and its application as logic gate

机译:2 ?? 2 MZI电光开关的优化及其在逻辑门中的应用

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Electro-optic Mach-Zehnder interferometer (MZI) switches are well known devices in optical systems for their high speed of operation. In next generation optical network, such switches have wide applications due to their high switching capability and great reliability. In this paper we have investigated the enhanced performance of an electro-optic switch made by titanium diffused lithium niobate (Ti:LiNbO3) functioned as waveguide medium based on integrated Mach-Zehnder interferometer (MZI) at 1.55 ??m wavelength. The performance of the switch is optimized for low switching voltage, low insertion loss, high extinction ratio. This is done by varying the strip thickness of titanium, interferometer arm length, arm gap, waveguide width, gap in the coupling region of the 3 dB couplers, and center position of second electrode deposited on integrated Mach-zehnder Interferometer arm with respect to the original axis of the switch. The designed switch gives lowest insertion loss of 0.00881dB and highest extinction ratio of 33.581 dB at 8.8 V.
机译:电光马赫曾德尔干涉仪(MZI)开关是光学系统中众所周知的设备,因为它们具有很高的操作速度。在下一代光网络中,这种交换机具有高交换能力和高可靠性,因此具有广泛的应用。在本文中,我们研究了基于集成Mach-Zehnder干涉仪(MZI)在1.55?m波长下用作扩散介质的钛扩散铌酸锂(Ti:LiNbO3)制成的电光开关的增强性能。开关的性能针对低开关电压,低插入损耗,高消光比进行了优化。这是通过改变钛的带厚度,干涉仪臂长,臂间隙,波导宽度,3 dB耦合器耦合区域中的间隙以及沉积在集成Mach-zehnder干涉仪臂上的第二电极相对于中心的中心位置来完成的开关的原始轴。设计的开关在8.8 V电压下的插入损耗最低,为0.00881dB,最高消光比为33.581 dB。

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