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Polarization beam splitter based on a photonic crystal heterostructure

机译:基于光子晶体异质结构的偏振分束器

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The design and characterization of a photonic crystal (PC) polarization beam splitter (PBS) that operates with an extinction ratio of greater than 15 dB for both polarizations are presented. The PBS is fabricated on a silicon-on-insulator (SOI) wafer where the input and output ports consist of 5 (mu)m wide ridge waveguides. A large spectral shift is observed in the dispersion plots of the lowest-order even (TE-like) and odd (TM-like) modes due to the SOI confinement. Because of this shift, the TE-like mode is close to a directional gap at the top of the band, and the TM-like mode is in a low-frequency regime where the dispersion surface is almost isotropic. We show that the TE-like mode has very high reflection at the interface between the two PCs, whereas the TM-like mode exhibits a very high transmission.
机译:介绍了两种偏振光的消光比大于15 dB的光子晶体(PC)偏振分束器(PBS)的设计和特性。 PBS在绝缘体上硅(SOI)晶圆上制造,输入和输出端口由5微米宽的脊形波导组成。由于SOI限制,在最低阶偶数(TE-like)和奇数(TM-like)模式的色散图中观察到较大的光谱偏移。由于这种移动,类TE模式接近频带顶部的方向间隙,而类TM模式处于低频状态,其中色散表面几乎各向同性。我们显示,类似TE的模式在两台PC之间的界面处具有很高的反射率,而类似TM的模式则具有很高的透射率。

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