Liu Qing, Gu Zhonghua, Kee Jack Sheng, Park Mi Kyoung
Opt Express. 2014 Dec 1;22(24):29954-63. doi: 10.1364/OE.22.029954.
In this paper, we demonstrate an optical filter using cladding modulated anti-symmetric long-period grating in a two-mode silicon waveguide. The filter consists of a two-mode waveguide connected with an input and output single-mode waveguide through two linear tapers. The anti-symmetric grating is formed by placing two periodic arrays of silicon squares offset by half of a grating pitch along the two-mode waveguide. Light coupling occurs between two co-propagating modes at the coupling wavelength through the grating and results in a rejection band at the output. The grating pitch, coupling coefficient, transmission spectrum and 3-dB bandwidth of the grating are investigated with the coupled-mode theory. By using a cladding modulated grating, the grating coupling strength can be controlled over a wide range by the two-mode waveguide width or separation distance between the grating and waveguide. Band-rejection filters are experimentally demonstrated in 1-μm, 0.8-μm and 0.7-μm wide two-mode silicon waveguides and rejection bands with different bandwidths and maximal attenuation contrasts larger than 15 dB (~97% coupling efficiency) have been achieved.
在本文中,我们展示了一种在双模硅波导中使用包层调制反对称长周期光栅的光学滤波器。该滤波器由一个双模波导组成,该双模波导通过两个线性锥形与输入和输出单模波导相连。反对称光栅是通过沿着双模波导放置两个硅方块的周期性阵列形成的,这两个阵列沿光栅间距偏移半个光栅间距。在耦合波长处,两个同向传播模式之间通过光栅发生光耦合,并在输出端产生一个阻带。利用耦合模理论研究了光栅的光栅间距、耦合系数、传输光谱和3分贝带宽。通过使用包层调制光栅,光栅耦合强度可以通过双模波导宽度或光栅与波导之间的间距在很宽的范围内进行控制。在1微米、0.8微米和0.7微米宽的双模硅波导中通过实验证明了带阻滤波器,并实现了具有不同带宽和最大衰减对比度大于15分贝(~97%耦合效率)的阻带。