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Development of photonic crystal structures for on-board optical communication

机译:用于机载光通信的光子晶体结构的开发

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We present designs for sharp bends in polymer waveguides using colloidal photonic crystal (PhC) structures. Both silica (SiO_2) sphere based colloidal PhC and core-shell colloidal PhC structures having a titania (TiO_2) core inside silica (SiO_2) shells are simulated. The simulation results show that core-shell Face Centered Cubic (FCC) colloidal crystals have a sufficient refractive index contrast to open up a bandgap in the desired direction when integrated into polymer waveguides and can achieve reflection >70% for the appropriate plane. Different crystal planes of the FCC structure are investigated for their reflection and compared with the calculated bandstructure. Different techniques for fabrication of PhC on rectangular seed layers namely slow sedimentation; spin coating and modified doctor blading are discussed and investigated. FCC and Random FCC silica structures are characterized optically to show realisation of (001) FCC.
机译:我们提出了使用胶体光子晶体(PhC)结构的聚合物波导中急剧弯曲的设计。模拟了基于二氧化硅(SiO_2)球的胶体PhC和在二氧化硅(SiO_2)壳内部具有二氧化钛(TiO_2)核的核-壳胶体PhC结构。仿真结果表明,当集成到聚合物波导中时,核-壳面心立方(FCC)胶体晶体具有足够的折射率对比,可以在所需方向上打开带隙,并且可以在适当的平面上实现大于70%的反射。研究了FCC结构的不同晶面的反射情况,并将其与计算出的能带结构进行了比较。在矩形种子层上制备PhC的不同技术,即缓慢沉淀;讨论并研究了旋涂和改进的刮刀刀片。 FCC和无规FCC硅石结构的光学表征显示(001)FCC的实现。

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