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Control of light propagation and localization in a photonic crystal slab by using a micromechanical actuator

机译:使用微机械致动器控制光子晶体板中的光传播和定位

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The tuning of the light propagation and localization properties in photonic crystal (PhC) slabs by using microactuators was demonstrated numerically and experimentally. A micromechanical actuator controls the position of the exterior structural element, which is located close to the PhC slab, and modulates the PhC properties through the change of the evanescent interaction of light confined in the PhC slab with the exterior element. When the exterior structural element approaches to a line-defect PhC waveguide, intensity and phase modulations occur. In the preliminary experiment using a line-defect PhC waveguide, we demonstrated the optical switching operation with an extinction ratio of ~10 dB at a wavelength of 1.55 μm. The localized state of light in a point-defect cavity can also be controlled. The tuning of the resonant wavelength over the spectral range of ~60nm at around the wavelength of 1.55 μm was numerically demonstrated by combining two PhC slabs. The approach discussed here can be widely employed for realizing functional and tunable PhC slab devices.
机译:通过使用微致动器调整光子晶体(PHC)板中的光传播和定位特性进行了数值和实验。微机械致动器控制外部结构元件的位置,该外部结构元件靠近PHC板,通过与外部元件的PHC板中限制的光的渐逝相互作用的变化来调节PHC性质。当外部结构元件接近线缺陷PHC波导时,发生强度和相位调制。在使用线缺陷PHC波导的初步实验中,我们证明了光学切换操作,其中波长为1.55μm的〜10dB的消光比。也可以控制点缺陷腔中的局部光状态。通过组合两个PHC板,对围绕1.55μm的波长围绕1.55μm的波长的频谱范围的谐振波长的调谐。这里讨论的方法可以广泛用于实现功能和可调PHC板器件。

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