Kim Seunghyun, Nordin Gregory P, Cai Jingbo, Jiang Jianhua
Laboratory for Integrated Computing and Optoelectronic Systems, University of Alabama in Huntsville, Huntsville, Alabama 35899, USA.
Opt Lett. 2003 Dec 1;28(23):2384-6. doi: 10.1364/ol.28.002384.
We propose an ultracompact high-efficiency polarizing beam splitter that operates over a wide wavelength range and is based on a hybrid photonic crystal and a conventional waveguide structure. Within a small area (15 microm x 10 microm), this polarizing beam splitter separates TM- and TE-polarized modes into orthogonal output waveguides. Results of simulations with the two-dimensional finite-difference time-domain method show that 99.3% of TM-polarized light is deflected by the photonic crystal structure (with a 28.0-dB extinction ratio), whereas 99.0% of TE-polarized light propagates through the structure (with a 32.2-dB extinction ratio). Wave vector diagrams are employed to explain the operation of a polarizing beam splitter. Tolerance analysis reveals a large tolerance to fabrication errors.
我们提出了一种超紧凑型高效偏振分束器,它基于混合光子晶体和传统波导结构,可在宽波长范围内工作。在小面积(15微米×10微米)内,这种偏振分束器将TM偏振模式和TE偏振模式分离到正交输出波导中。二维时域有限差分法的模拟结果表明,99.3%的TM偏振光被光子晶体结构偏转(消光比为28.0分贝),而99.0%的TE偏振光通过该结构传播(消光比为32.2分贝)。利用波矢图来解释偏振分束器的工作原理。容差分析表明对制造误差具有较大的容差。