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Metasurfaces Based on Phase-Change Material as a Reconfigurable Platform for Multifunctional Devices

机译:基于相变材料的超表面作为多功能设备的可重构平台

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摘要

Integration of phase-change materials (PCMs) into electrical/optical circuits has initiated extensive innovation for applications of metamaterials (MMs) including rewritable optical data storage, metasurfaces, and optoelectronic devices. PCMs have been studied deeply due to their reversible phase transition, high endurance, switching speed, and data retention. Germanium-antimony-tellurium (GST) is a PCM that has amorphous and crystalline phases with distinct properties, is bistable and nonvolatile, and undergoes a reliable and reproducible phase transition in response to an optical or electrical stimulus; GST may therefore have applications in tunable photonic devices and optoelectronic circuits. In this progress article, we outline recent studies of GST and discuss its advantages and possible applications in reconfigurable metadevices. We also discuss outlooks for integration of GST in active nanophotonic metadevices.
机译:相变材料(PCM)集成到电气/光学电路中已经引发了超材料(MM)应用的广泛创新,包括可重写光学数据存储,超表面和光电设备。由于PCM具有可逆的相变,高耐用性,切换速度和数据保留能力,因此已经进行了深入的研究。锗-锑-碲(GST)是具有非晶相和结晶相且具有不同特性的PCM,它是双稳态和非易失性的,并且响应于光或电刺激而经历可靠且可再现的相变;因此,GST可能会在可调谐光子设备和光电电路中得到应用。在本文中,我们概述了GST的最新研究,并讨论了GST的优点以及在可重新配置的元设备中的可能应用。我们还讨论了将GST集成到有源纳米光子元设备中的前景。

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