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Design of mechanically-tunable photonic crystal split-beam nanocavity

机译:机械可调光子晶体分束纳米腔的设计

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Photonic crystal split-beam nanocavities allow for ultra-sensitive optomechanical transductions but are degraded due to their relatively low optical quality factors. We have proposed and experimentally demonstrated a new type of one-dimensional photonic crystal split-beam nanocavity optimized for an ultra-high optical-quality factor. The design is based on the combination of the deterministic method and hill-climbing algorithm. The latter is the simplest and most straightforward method of the local search algorithm that provides the local maximum of the chosen quality factors. This split-beam nanocavity is made up of two mechanical uncoupled cantilever beams with Bragg mirrors patterned onto it and separated by a 75-nm air gap. Experimental results emphasize that the quality factor of the second-order TE mode can be as high as 1.99 x 10(4). Additionally, one beam of the device is actuated in the lateral direction with the aid of a NEMS actuator, and the quality factor maintains quite well even if there is a lateral offset up to 64 nm. Potentially promising applications, such as sensitive optomechanical torque sensor, local tuning of Fano resonance, all-optical-reconfigurable filters, etc., are foreseen. (C) 2015 Optical Society of America
机译:光子晶体分裂束纳米腔可实现超灵敏的光机械转换,但由于其相对较低的光学品质因数而退化。我们已经提出并通过实验证明了一种针对超高光学质量因子而优化的新型一维光子晶体分裂束纳米腔。该设计基于确定性方法和爬山算法的组合。后者是本地搜索算法中最简单,最直接的方法,它提供所选质量因数的局部最大值。这种分束式纳米腔由两个机械非耦合的悬臂梁组成,上面悬着布拉格镜,并通过一个75纳米的气隙隔开。实验结果强调,二阶TE模式的品质因数可以高达1.99 x 10(4)。此外,借助NEMS致动器在横向方向上致动该装置的一束光,即使横向偏移最大为64 nm,质量因数也保持良好。可以预见到潜在的有前途的应用,例如灵敏的光机械转矩传感器,Fano共振的局部调谐,全光可重构滤波器等。 (C)2015年美国眼镜学会

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