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Periodic modulation of extraordinary optical transmission through subwavelength hole arrays using surrounding Bragg mirrors

机译:使用周围的布拉格镜对通过亚波长孔阵列的非凡光学传输进行周期性调制

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The enhanced light transmission through an array of subwavelength holes surrounded by Bragg mirrors is studied, showing that the mirrors act to confine the surface plasmons associated with the extraordinary optical transmission effect, forming a surface resonant cavity. The overall effect is increased light transmission intensity by more than a factor of 3 beyond the already enhanced transmission, independent of whether the Bragg mirrors are on the input or the output side of the incident light. The geometry of the Bragg mirror structures controls the enhancement and can even reduce the transmission by half. By varying these geometric parameters, we were able to periodically modulate the transmission of light for specific wavelengths, consistent with the propagation and interference of surface plasmon waves in a resonant cavity. Finite difference time domain simulations and a wave propagation model verify this effect.
机译:研究了通过布拉格反射镜包围的一系列亚波长孔的增强的光透射,表明这些反射镜的作用是限制与异常光透射效应相关的表面等离激元,从而形成表面共振腔。总体效果是,与已经增强的透射率相比,光透射强度增加了三倍以上,而与布拉格反射镜是在入射光的输入侧还是输出侧无关。布拉格镜结构的几何形状控制了增强效果,甚至可以将透射率降低一半。通过改变这些几何参数,我们能够周期性地调制特定波长的光的透射,这与共振腔中表面等离激元波的传播和干涉相一致。时域有限差分仿真和波传播模型验证了这种效果。

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