Li Jiu-Sheng, Xu De-gang, Yao Jian-quan
Centre for THz Research, China Jiliang University, Hangzhou 310018, China.
Appl Opt. 2010 Aug 20;49(24):4494-7. doi: 10.1364/AO.49.004494.
We designed a compact terahertz (THz) wave polarizing beam splitter based on a periodic bilayer structure, which operates over a wide THz wavelength range. Within a short length (about 1 mm), this polarizing beam splitter separates THz wave TE- and TM-polarized modes into orthogonal output waveguides. Results of simulations with the finite-element method show that 99.99% of the TE-polarized THz wave is deflected by the periodic bilayer structure (with 39.9 dB extinction ratio), whereas 99.58% of the TM-polarized THz wave propagates through the structure (with a 23.7 dB extinction ratio). Tolerance analysis reveals a large tolerance to fabrication errors.
我们基于周期性双层结构设计了一种紧凑型太赫兹(THz)波偏振分束器,其在很宽的太赫兹波长范围内工作。在较短长度(约1毫米)内,这种偏振分束器将太赫兹波的TE偏振模和TM偏振模分离到正交的输出波导中。有限元方法的模拟结果表明,周期性双层结构使99.99%的TE偏振太赫兹波发生偏转(消光比为39.9分贝),而99.58%的TM偏振太赫兹波穿过该结构(消光比为23.7分贝)。公差分析表明对制造误差具有较大的容忍度。