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Photonic Crystal-Based MOEMS Devices

机译:基于光子晶体的MOEMS器件

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摘要

In this paper, a new class of microoptoelectromechanical system (MOEMS) devices combining photonic crystals (PCs) formed in in-plane waveguiding membranes (in-plane 1-D or 2-D large contrast modulation of the optical index) and a multilayer stack (1-D “vertical” modulation of the optical index) according to the so-called 2.5-D micronanophotonics approach is reported. The operation of the devices is based on the resonant coupling between radiated optical modes and slow Bloch modes waveguided in the particular membranes of the stack, which are laterally patterned to form a PC. Use of high-index contrast PC gratings result in enhanced lateral compactness of the devices. The MOEMS functionality is achieved via micromechanical subwavelength vertical displacement of some of the suspended membranes. Recent demonstrations of devices (including tunable filters and surface-emitting microsources) operating along these principles are presented.
机译:在本文中,一类新型的微光机电系统(MOEMS)器件结合了在平面波导膜中形成的光子晶体(PC)(光学指数的平面一维或二维大对比度调制)和多层堆叠报道了根据所谓的2.5-D微纳光子学方法的(光学指数的1-D“垂直”调制)。装置的操作基于在堆叠的特定膜中波导的辐射光学模式和慢Bloch模式之间的共振耦合,将其横向图案化以形成PC。使用高折射率对比PC光栅可以提高设备的横向紧凑性。 MOEMS功能是通过某些悬浮膜的微机械亚波长垂直位移实现的。展示了按照这些原理进行操作的设备(包括可调滤波器和表面发射微源)的最新演示。

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