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Theoretical realization of robust broadband transparency in ultrathin seamless nanostructures by dual blackbodies for near infrared light

机译:理论实现健壮的宽带超薄纳米结构无缝的透明度通过双黑体近红外光线

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摘要

We propose a counter-intuitive mechanism of constructing an ultrathin broadband transparent device with two perfect blackbodies. By introducing hybridization of plasmon modes, resonant modes with different symmetries coexist in this system. A broadband transmission spectrum in the near infrared regime is achieved through controlling their coupling strengths, which is governed by the thickness of high refractive index layer. Meanwhile, the transparency bandwidth is found to be tunable in a large range by varying the geometric dimension. More significantly, from the point view of applications, the proposed method of achieving broadband transparency can perfectly tolerate the misalignment and asymmetry of periodic nanoparticles on the top and bottom, which is empowered by the unique dual of coupling-in and coupling-out processes within the pair of blackbodies. Moreover, roughness has little influence on its transmission performance. According to the coupled mode theory, the distinguished transmittance performance is physically interpreted by the radiative decay rate of the entire system. In addition to the feature of uniquely robust broadband transparency, such a ultrathin seamless nanostructure (in the presence of a uniform silver layer) also provides polarization-independent and angle-independent operations. Therefore, it may power up a wide spectrum of exciting applications in thin film protection, touch screen techniques, absorber-emitter transformation, etc.
机译:我们提出一个反直觉的机制构建一个超薄宽带透明设备有两个完美的黑体。介绍等离子体杂交模式,谐振模式具有不同对称性共存在这个系统。近红外的政权是通过控制耦合的优点,这是由高折射率的厚度指标层。带宽是发现在大范围可调通过改变几何尺寸。值得注意的是,从的角度应用程序,实现的方法宽带透明度可以完美地容忍偏差和不对称周期纳米粒子在顶部和底部,这是独特的双耦合控制和授权在一双coupling-out过程黑体。对其传输性能的影响。根据耦合模理论,性能卓越的透光率身体被辐射衰变整个系统。功能独特的强大的宽带透明度,这样一个超薄无缝纳米结构(在统一的存在银层)还提供了polarization-independent和angle-independent操作。在薄膜光谱令人兴奋的应用保护,触摸屏技术,absorber-emitter转换等。

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