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首页> 外文期刊>Physics Letters, A >Dispersion and optical gradient force from high-order mode coupling between two hyperbolic metamaterial waveguides
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Dispersion and optical gradient force from high-order mode coupling between two hyperbolic metamaterial waveguides

机译:来自两个双曲超材料波导之间的高阶模耦合的色散和光学梯度力

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摘要

We analytically study dispersion properties and optical gradient forces of different-order transverse magnetic (TM) modes in two coupled hyperbolic metamaterial waveguides (HMMWs). According to Maxwell's equations, we obtain the dispersion relation of symmetric and antisymmetric modes, and calculate optical gradient forces of different-order modes by using Maxwell stress tensor. Numerical results show that the dispersion properties are dependent on the filling ratio, and the optical gradient forces of high-order TM modes are larger than the fundamental mode when the gap between two HMMWs is very narrow, but they weaken much faster than the case of low-order TM modes with the gap width increasing. In addition, the effects of the dielectric surrounding of waveguides on the coupling effect and optical gradient force are clarified. These properties offer an avenue for various optomechanical applications in optical sensors and actuators. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们分析研究了两个耦合双曲线超材料波导(HMMWs)中不同阶横向磁(TM)模式的色散特性和光学梯度力。根据麦克斯韦方程,得到对称和反对称模的色散关系,并利用麦克斯韦应力张量计算出不同阶模的光学梯度力。数值结果表明,色散特性取决于填充比,当两个HMMW之间的间隙非常窄时,高阶TM模的光学梯度力大于基本模,但它们的衰减快于基模。间隙宽度增加的低阶TM模式。另外,阐明了波导的电介质周围对耦合效应和光学梯度力的影响。这些特性为光学传感器和执行器中的各种光机械应用提供了途径。 (C)2016 Elsevier B.V.保留所有权利。

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