Apiratikul Paveen, Wathen Jeremiah J, Porkolab Gyorgy A, Wang Bohan, He Lei, Murphy Thomas E, Richardson Christopher J K
Opt Express. 2014 Nov 3;22(22):26814-24. doi: 10.1364/OE.22.026814.
Enhancements of the continuous-wave four-wave mixing conversion efficiency and bandwidth are accomplished through the application of plasma-assisted photoresist reflow to reduce the sidewall roughness of sub-square-micron-modal area waveguides. Nonlinear AlGaAs optical waveguides with a propagation loss of 0.56 dB/cm demonstrate continuous-wave four-wave mixing conversion efficiency of -7.8 dB. Narrow waveguides that are fabricated with engineered processing produce waveguides with uncoated sidewalls and anti-reflection coatings that show group velocity dispersion of +0.22 ps²/m. Waveguides that are 5-mm long demonstrate broadband four-wave mixing conversion efficiencies with a half-width 3-dB bandwidth of 63.8-nm.
通过应用等离子体辅助光刻胶回流来降低亚平方微米模态面积波导的侧壁粗糙度,实现了连续波光四波混频转换效率和带宽的提高。传播损耗为0.56 dB/cm的非线性AlGaAs光波导展示出-7.8 dB的连续波光四波混频转换效率。采用工程加工制造的窄波导产生具有未涂覆侧壁和抗反射涂层的波导,其群速度色散为+0.22 ps²/m。长度为5毫米的波导展示出半高3分贝带宽为63.8纳米的宽带四波混频转换效率。