首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Photorefractive photonic crystals fabricated with PMMA and 5CB based materials using three-dimensional colloidal crystalsf
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Photorefractive photonic crystals fabricated with PMMA and 5CB based materials using three-dimensional colloidal crystalsf

机译:使用三维胶体晶体的PMMA和5CB基材料制成光折褶皱光子晶体

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摘要

The variation of the refractive index is the key property of photorefractive materials and an important factor that affects photonic crystals. Therefore, photorefractive photonic crystals are interesting optical materials in physics. One of the typical groups of photorefractive materials, polymer dispersed liquid crystals (PMMA, 5CB, and C60), are filled into three dimensional silica colloidal crystals by solventinduced phase separation to fabricate photonic crystals. The stop band shifts to shorter wavelength when a low voltage is applied. By using the z-scan and two-beam coupling technique, several band gap dependent optical properties of photorefractive photonic crystals are studied whilst continuously adjusting the wavelength of the stop band. The third-order nonlinear refractive coefficient is enhanced at the edge of the photonic stop band. The photorefractive diffraction efficiency achieves a maximum value when the stop band wavelength overlaps with the laser beam wavelength.
机译:折射率的变化是光折射材料的关键特性和影响光子晶体的重要因素。 因此,光折射光子晶体是物理学中有趣的光学材料。 通过溶剂诱导的相分离填充到三维二氧化硅胶体晶体中的典型光刷型材料,聚合物分散的液晶(PMMA,5CB和C60)以制造光子晶体。 当施加低电压时,止动槽移动到更短的波长。 通过使用Z扫描和双光束耦合技术,研究了光反射光子晶体的几个带隙相关光学性质,同时连续调节止动带的波长。 在光子挡槽的边缘处增强了三阶非线性折射系数。 当止动频带波长与激光束波长重叠时,光焦衍射效率达到最大值。

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