Optical characteristics of transverse A-O waveguide devices with SAW by FDTD analysis

R. Balasubramanian, Y. Miyazaki, N. Goto
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Abstract

Acousto-Optic(A-O) waveguide devices have been used in the photonics network such as switch, tunable filter and wave separator in wavelength division multiplexed system, etc. Most of the works employ collinear devices, where acoustic waves and optical signals propagate along the longitudinal propagation direction in an integrated optical waveguide device. Transverse A-O waveguide device using surface acoustic wave (SAW) is expected to overcome the slow responses of collinear devices and accomplish Gigabit class high speed switching. When SAW is propagating in a direction transverse to the optical signal propagation direction in a slab optical waveguide, due to the A-O effect, the refractive index (permittivity) of waveguide will be modulated. Accordingly, optical signal is derived with mode conversion and change in propagation constant. These effects can be used to construct optical devices for high speed modulation and switching applications. In this paper, we have presented the optical propagation characteristics of optical fundamental mode launched in to A-O waveguide, investigated using numerical computer simulation of Finite Difference Time Domain (FDTD) analysis. We have investigated the optical mode conversion and phase modulation using FDTD computer simulations.
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用时域有限差分法分析带SAW的横向A-O波导器件的光学特性
声光波导器件已广泛应用于光电子网络中,如波分复用系统中的开关、可调谐滤波器和波分离器等。大多数作品采用共线器件,声波和光信号在集成光波导器件中沿纵向传播方向传播。利用表面声波(SAW)的横向A-O波导器件有望克服共线器件的缓慢响应,实现千兆级高速开关。当SAW在平板光波导中沿光信号传播方向的横向传播时,由于a - o效应,波导的折射率(介电常数)会发生调制。因此,光信号的导出具有模式转换和传播常数的变化。这些效应可用于构建高速调制和开关应用的光学器件。本文介绍了在A-O波导中发射的光基模的光传播特性,并采用时域有限差分(FDTD)数值模拟方法进行了研究。我们利用时域有限差分法(FDTD)计算机模拟研究了光模转换和相位调制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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