arXiv · 1703.10753
Chalcogenide hyperbolic metamaterial with switchable negative refraction
Abstract
Chalcogenide glasses are exceptional materials that show a wide contrast in optical properties upon phase change and are highly researched for reconfigurable electronic and nanophotonic devices. Here, we report the first proof-of-concept demonstration of a non-volatile, switchable hyperbolic metamaterial based on a chalcogenide glass. By using the $Ge_{2}Sb_{2}Te_{5}$ (GST) alloy as one of the components of a multilayered nanocomposite structure and exploiting its phase change property, we demonstrate a hyperbolic metamaterial in which the Type-I hyperbolic dispersion $(ε_{\perp} < 0, ε_{\parallel} > 0)$ can be switched from the near infrared to the visible region. This opens up new opportunities for reconfigurable device applications, such as imaging, optical data storage and sensing.
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Harish N. S. Krishnamoorthy, Behrad Gholipour, Nikolay I. Zheludev, Cesare Soci. 2017-03-31. Chalcogenide hyperbolic metamaterial with switchable negative refraction. https://arxiv.org/abs/1703.10753
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