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一种可编程多功能硫属化物导波透镜。

A reprogrammable multifunctional chalcogenide guided-wave lens.

机构信息

School of Optoelectronic Engineering and Instrumentation Science, Dalian University of Technology, 116024, China.

出版信息

Nanoscale. 2018 Sep 20;10(36):17053-17059. doi: 10.1039/c8nr02100g.

Abstract

The transformation optics (TO) technique, which establishes an equivalence between a curved space and a spatial distribution of inhomogeneous constitutive parameters, has enabled an extraordinary paradigm for manipulating wave propagation. However, extreme constitutive parameters, as well as a static nature, inherently limit the simultaneous achievement of broadband performance, ultrafast reconfigurability and versatile reprogrammable functions. Here, we integrate the TO technique with an active phase-change chalcogenide to achieve a reconfigurable multi-mode guided-wave lens. The lens is made of a Rinehart-shaped curved waveguide with an effective refractive index gradient profile through partially crystallizing Ge2Sb2Te5. Upon changing the bias time of the external voltage imparted to the Ge2Sb2Te5 segments, the refractive index gradient profile can be tuned with a transformative platform for various functions for visible light. The electrically reprogrammable multi-mode guided-wave lens is capable of dynamically acquiring various functionalities with an ultrafast response time. Our findings may offer a significant step forward by providing a universal method to obtain ultrafast and highly versatile guided-wave manipulation, such as in Einstein rings, cloaking, Maxwell fish-eye lenses and Luneburg lenses.

摘要

变换光学(TO)技术在弯曲空间和各向异性本构参数的空间分布之间建立了等价关系,为操控波的传播提供了一种非凡的范例。然而,极端的本构参数以及静态特性本质上限制了宽带性能、超快可重构性和多功能可编程功能的同时实现。在这里,我们将变换光学技术与一种主动的相变硫族化合物相结合,实现了一种可重构的多模导波透镜。该透镜由一个 Rinehart 形状的弯曲波导制成,具有通过部分结晶 Ge2Sb2Te5 形成的有效折射率梯度分布。通过改变施加到 Ge2Sb2Te5 段的外部电压的偏置时间,可以利用变换平台来调整折射率梯度分布,从而实现可见光的各种功能。这种电可重编程的多模导波透镜能够以超快的响应时间动态获取各种功能。我们的研究结果可能会向前迈出重要的一步,提供了一种通用的方法来获得超快和高度多功能的导波操控,例如爱因斯坦环、隐身、麦克斯韦鱼眼透镜和伦堡透镜。

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