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100 GHz electrically tunable planar Bragg grating via nematic liquid crystal overlay towards reconfigurable WDM networks

机译:100 GHz电可调平面布拉格光栅,通过向列型液晶覆盖层朝向可重构WDm网络

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摘要

Novel liquid crystal-based integrated optical devices with >140GHz electrical tuning are presented for application towards reconfigurable wavelength division multiplexing (WDM) networks. Initial results with Bragg wavelength tuning covering five 25GHz WDM channel spacing have been achieved with 170V (peak-to-peak) sinusoidal voltages applied across electro-patterned ITO-covered glass electrodes placed 60µm apart. These prototype devices were fabricated using direct UV grating writing, with an evanescent field coupling into a liquid crystal overlay through an etched window. Electrically controlled liquid crystal birefringence modifies the waveguide effective index, resulting in Bragg wavelength shift. Merck 18523 nematic liquid crystals are used, exhibiting compatible refractive index values to that of silica (no=1.44, ne=1.49 at lambda=1550nm). Homeotropic alignment of the liquid crystal is provided by application of a surfactant layer.The inherent refractive index sensitivity of our etched direct-UV-written structures allows observation of previously unreported liquid crystal surface-behaviour, such as multi-threshold points during variation of the applied field. Continued optimisation based on evanescent field penetration, electrode layout, and surface interaction will allow implementation towards a variety of novel liquid crystal applications and devices. For example, a cascaded architecture of these integrated liquid crystal devices operating at different Bragg wavelengths would pave the way towards true colorless add/drop modules for dense optical networks.
机译:提出了具有> 140GHz电调谐的新型基于液晶的集成光学设备,可用于可重构波分复用(WDM)网络。通过在间隔60μm的电图案化ITO覆盖玻璃电极上施加170V(峰-峰)正弦电压,可以获得覆盖五个25GHz WDM通道间隔的Bragg波长调谐的初步结果。这些原型设备是使用直接UV光栅写法制造的,其van逝场通过蚀刻的窗口耦合到液晶覆盖层中。电控液晶双折射会修改波导有效折射率,从而导致布拉格波长偏移。使用Merck 18523向列型液晶,其显示出与二氧化硅相容的折射率值(no = 1.44,在λ= 1550nm处ne = 1.49)。通过应用表面活性剂层可以实现液晶的垂直排列。我们蚀刻的直接UV写入结构的固有折射率灵敏度允许观察以前未报告的液晶表面行为,例如变化过程中的多阈值点。应用领域。基于e逝场穿透,电极布局和表面相互作用的持续优化将允许朝着各种新型液晶应用和器件的方向实施。例如,以不同的布拉格波长工作的这些集成液晶装置的级联架构将为通往密集光学网络的真正的无色分插模块铺平道路。

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