首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Coupled-mode theory analysis of optical forces between longitudinally shifted periodic waveguides
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Coupled-mode theory analysis of optical forces between longitudinally shifted periodic waveguides

机译:纵向位移周期波导之间光力的耦合模式理论分析

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We develop a coupled-mode theory that describes the dependence of optical gradient forces between side-coupled periodic waveguides on the longitudinal shift between the waveguides. Our approach is fully applicable to waveguides with a strong refractive-index modulation and in the regime of slow-light enhancement of optical forces, associated with the group-velocity reduction at the photonic band edge. Our method enables fast calculation of both the transverse and longitudinal forces for all longitudinal shifts, based on numerical simulations of mode profiles only at particular shift values. We perform a comparison with direct numerical simulations for photonic-crystal nanowire waveguides and demonstrate that our approach provides very accurate results for the slow-light enhanced transverse and longitudinal forces, accounting for the key features of force suppression and sign reversal at critical shift values.
机译:我们开发了一种耦合模式理论,该理论描述了侧耦合周期波导之间的光学梯度力对波导之间的纵向偏移的依赖性。我们的方法完全适用于具有强折射率调制的波导,以及在光学力的慢光增强(与光子带边缘处的组速度降低相关)的情况下。我们的方法能够仅基于特定位移值下的模式轮廓的数值模拟,快速计算所有纵向位移的横向力和纵向力。我们与光子晶体纳米线波导的直接数值模拟进行了比较,并证明了我们的方法为慢光增强的横向和纵向力提供了非常准确的结果,这说明了在关键位移值时力抑制和符号反转的关键特征。

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