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Novel polarization selector based on an active waveguide photonic bandgap structure

机译:基于主动波导光子带隙结构的新型偏振光选择器

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We describe a photonic bandgap polarization selector based on a photonic crystal placed at junction of two 90° intersecting waveguides to form an ultra-compact device. The photonic crystal consists of 7 layers of a triangular lattice with a radius to pitch ratio (r/a) of 0.24 and a lattice constant of 0.386μm. The PBG is orientated so that the light is incident and collected at 45° to the Γ-K crystallographic direction. Modeling of the PBG shows that TM polarized light is strongly reflected while TE light passes largely into the crystal. Measurements of the fibre-to-fibre transmitted power of the device for each polarization show that the TM collected power is ~6dB higher than the TE light for equal input polarization powers. Further evidence of the strong reflection of TM light comes from an equivalent sample without a 2-D lattice at the waveguide junction. In these samples, no TM light is detected at the output. Furthermore, by taking into account the TE and TM gams within the active waveguides, the TM to TE polarization selection of the PBG is estimated to be up to 22dB.
机译:我们描述了一种基于位于两个90°交叉波导的交界处的光子晶体的光子带隙偏振光选择器,以形成超紧凑的装置。光子晶体由7层的三角形晶格组成,三角形的半径为0.24的俯仰比(R / A),晶格常数为0.386μm。 PBG定向以使光入射并在45°处收集到γ-k晶体方向。 PBG的建模表明,TM偏振光强烈反射,而TE光在很大程度上进入晶体。用于每个偏振的装置的光纤到光纤传输功率的测量表明,TM收集的功率比对于等于输入偏振功率的TE光高〜6dB。进一步的TM光反射的进一步证据来自在波导连接处的没有2-D格子的等效样品。在这些样品中,在输出处没有检测到TM光。此外,通过考虑到有源波导内的TE和TM GAM,PBG的TM至TE偏振选择估计高达22dB。

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