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Design optimization of high-speed optical modulators

机译:高速光调制器的设计优化

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The effects of design parameters on the modulating voltage and optical bandwidth are reported for lithium niobate, GaAs and polymer electro-optic modulators by using rigorous numerical techniques. It is shown that by etching lithium niobate, the switching voltage can be reduced and the bandwidth improved. For a GaAs-based modulator using higher aluminium content in the buffer layer for a given optical loss can shorten the device length. It is also observed that the dielectric loss and impedance matching play a key role in velocity-matched high-speed modulators with low conductor loss. It is also indicated in the work that by using tantalium pentoxide coating, velocity matching can be achieved for GaAs modulators. The effect of non-vertical side wall on the polarisation conversion and single mode operation and the bending loss of polymer rib waveguide for electro-optical modulators are also reported.
机译:通过使用严格的数值技术,向铌酸锂,GaAs和聚合物电光调制器报告了设计参数对调制电压和光带宽的影响。结果表明,通过蚀刻铌酸锂,可以减小开关电压并且带宽改善。对于使用较高铝含量的基于GaAs的调制器,用于给定光学损失的缓冲层可以缩短装置长度。还观察到,介电损耗和阻抗匹配在具有低导体损耗的速度匹配的高速调制器中起着关键作用。还在通过使用五氧化钽涂层的工作中表明,可以对GaAs调制器实现速度匹配。还报道了非垂直侧壁对电光调制器的偏振转换和单模操作和聚合物肋波导的弯曲损失的影响。

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