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首页> 外文期刊>Physics Letters, A >Enhancement of acousto-optical coupling in two-dimensional air-slot phoxonic crystal cavities by utilizing surface acoustic waves
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Enhancement of acousto-optical coupling in two-dimensional air-slot phoxonic crystal cavities by utilizing surface acoustic waves

机译:利用表面声波利用表面声波提高二维空气槽荧光晶体腔中的声光耦合

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摘要

A phoxonic crystal is a periodically patterned material that can simultaneously localize optical and acoustic modes. The acousto-optical coupling in two-dimensional air-slot phoxonic crystal cavities is investigated numerically. The photons can be well confined in the slot owing to the large electric field discontinuity at the air/dielectric interfaces. Besides, the surface acoustic modes lead to the localization of the phonons near the air-slot. The high overlap of the photonic and phononic cavity modes near the slot results in a significant enhancement of the moving interface effect, and thus strengthens the total acousto-optical interaction. The results of two cavities with different slot widths show that the coupling strength is dependent on the slot width. It is expected to achieve a strong acousto-optical/optomechanical coupling in air-slot phoxonic crystal structures by utilizing surface acoustic modes. (C) 2016 Elsevier B.V. All rights reserved.
机译:Phoxonic晶体是一种周期性图案化材料,可以同时定位光学和声学模式。 在数值上研究了二维空气槽偶像晶腔中的声光耦合。 由于空气/介电接口处的大电场不连续性,光子可以很好地限制在槽中。 此外,表面声学模式导致空气槽附近的声子的定位。 光子和声子腔模式附近的高重叠导致移动界面效应的显着增强,从而增强了总声学 - 光学相互作用。 两个具有不同槽宽度的腔的结果表明,耦合强度取决于槽宽度。 期望通过利用表面声学模式实现空气槽偶氮晶体结构中的强大声光/光学耦合。 (c)2016 Elsevier B.v.保留所有权利。

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