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Polarization independent electro-optical waveguides with liquid crystals in isotropic phase

机译:各向同性液晶的偏振无关电光波导

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Electro-optically induced waveguides can be used in fiber optic networks for optical power control and the distribution of optical signals transmitted over optical fibers. Reliable operation is ensured with this type of waveguides due to their non-mechanical principle of operation. Their polarization dependent behavior caused by field-induced birefringence effects may limit however their practical applications. We report on a method to reduce the polarization dependent loss in electro-optically induced waveguides with a core made of liquid crystals in isotropic phase. The concept design enables a controlled adjustment of the electric field distribution, which is responsible for inducing and shaping the optical mode, by employing an optimized electrode arrangement. In this new waveguide structure, the TM and TE modes coexist spatially and are guided in a similar way. In order to demonstrate this concept, straight and bending waveguides in 1×1 and 1×2 light input to output configurations have been designed and fabricated. The electrode arrangement and single mode waveguide geometry were optimized using FEM simulations. Bulk silicon micromachining was used to fabricate these waveguides. In particular, the manufactured device consisted of two processed silicon substrates with a liquid crystal layer enclosed in between. Devices tested with varying driving voltage have revealed comparable transmitted power for both TE and TM modes. Very low polarization dependent losses over a more than 20 dB wide dynamic attenuation range have been obtained.
机译:光电感应波导可用于光纤网络中,以控制光功率并分配通过光纤传输的光信号。由于这类波导的非机械工作原理,因此可以确保可靠的工作。但是,由场诱导的双折射效应引起的偏振相关行为可能会限制其实际应用。我们报告了一种方法,该方法可减少电导波导的偏振相关损耗,该波导的各向同性相由液晶制成。该概念设计通过采用优化的电极布置实现了对电场分布的受控调节,该电场分布负责诱导和整形光学模式。在这种新的波导结构中,TM和TE模式在空间上共存,并且以相似的方式被引导。为了证明这个概念,已经设计并制造了在1×1和1×2光输入到输出配置中的直线形和弯曲形波导。电极布置和单模波导几何形状使用FEM仿真进行了优化。使用体硅微加工来制造这些波导。特别地,所制造的装置由两个处理过的硅基板组成,在它们之间封装有液晶层。在不同的驱动电压下进行测试的设备显示出TE和TM模式的发射功率相当。在超过20 dB的宽动态衰减范围内,获得了非常低的偏振相关损耗。

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