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Novel design of Z-cut lithium niobate electrooptic modulator

机译:Z切铌酸锂电光调制器的新颖设计

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Analysis and optimisation of ultra-high-speed Z-cut lithium niobate (LN) electrooptic modulator, operating at a high frequency region, by using full wave finite element numerical technique has been demonstrated. Investigation of the effects of adjusting the buffer layer thickness, the electrode height and the waveguide trapezoidal profile on the microwave effective index (N_m), the characteristic impedance (Z_c), the microwave losses (α_c) and the half-wave voltage-length product (V_πL) has been reported. Optimisation of the above parameters yield to a novel design of LN modulator with a low V_πL and high bandwidth operating at a frequency range between 1-100 GHz. The frequency dependent dispersion of the key device parameters with aim to determine the device suitability for high speed operation has been demonstrated.
机译:通过使用全波有限元数值技术,已经证明了在高频区域工作的超高速Z形切割铌酸锂(LN)电光调制器的分析和优化。研究调整缓冲层厚度,电极高度和波导梯形轮廓对微波有效指数(N_m),特性阻抗(Z_c),微波损耗(α_c)和半波电压长度乘积的影响(V_πL)已被报道。对以上参数的优化产生了一种新颖的LN调制器设计,该LN调制器具有低V_πL和高带宽,并在1-100 GHz之间的频率范围内工作。已经证明了关键设备参数的频率相关色散,目的是确定设备对高速操作的适用性。

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