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Electro-Optic Modulator Based on Novel Organic-Inorganic Hybrid Nonlinear Optical Materials

机译:基于新型有机-无机杂化非线性光学材料的电光调制器

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A Mach-Zehnder type electro-optic (EO) modulator based on novel organic-inorganic hybrid nonlinear optical materials attached with Disperse Red 19 has been successfully designed and fabricated. The new material system presents a smartly controlled process to overcome the EO effect stability tradeoff of conventional EO polymers and obtains poling efficiency and thermal stability. The characteristic parameters of both the embedded waveguide and the coplanar waveguide traveling-wave electrode are carefully designed and simulated by MATLAB program. The optimized structural properties and fabrication procedures are demonstrated. The electrical-optical overlap factor of fundamental mode is obtained as 85.62%. The device exhibits an EO coefficient of 12.8 pm/V at 1550 nm and stable operation, which shows potential for planar active light-wave circuit applications.
机译:已成功设计和制造了一种基于新型有机-无机混合非线性光学材料并附有分散红19的Mach-Zehnder型电光(EO)调制器。新材料系统提供了一种智能控制的过程,可以克服常规EO聚合物的EO效果稳定性折衷,并获得极化效率和热稳定性。嵌入式波导和共面波导行波电极的特征参数均经过精心设计,并通过MATLAB程序进行了仿真。展示了优化的结构性能和制造程序。基本模式的电光重叠因子为85.62%。该器件在1550 nm处的EO系数为12.8 pm / V,并且工作稳定,这显示了在平面有源光波电路应用中的潜力。

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