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Techniques for Tuning Two-Dimensional Photonic Crystal Devices

机译:调谐二维光子晶体器件的技术

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摘要

We investigate methods for actively tuning two-dimensional photonic crystal devices by modulating the index of refraction of the constituent materials. The index of refraction is modulated by infiltrating liquid crystals into a photonic crystal lattice of air cylinders in silicon. Moreover, the orientation of the liquid crystal molecules within the cylinders is actively modulated in order to induce a change in the dielectric tensor; thereby, tuning the optical properties of the photonic crystal. We validate and characterize the tunability of these devices both experimentally and with three-dimensional finite-difference time-domain method simulations. Furthermore, we integrate these tunable devices to demonstrate their enhancement of WDM photonic crystal applications.
机译:我们研究了通过调制构成材料的折射率来主动调谐二维光子晶体器件的方法。通过将液晶渗透到硅中的气缸光子晶格中来调节折射率。此外,圆柱体内的液晶分子的取向被主动调制以诱导介电张量的变化;由此,调整光子晶体的光学性质。我们验证并表征了通过实验和三维有限差分时间域方法模拟的这些设备的可调性。此外,我们集成了这些可调谐设备以展示其增强WDM光子晶体应用。

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