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基于硫属化物相变材料的可重构太赫兹超表面器件的研究进展

Progress on reconfigurable terahertz metasurface devices based on sulfide phase change materials

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【作者】 张寿俊曹暾田震

【Author】 Zhang Shoujun;Cao Tun;Tian Zhen;Center for Terahertz Waves and School of Precision Instrument and Optoelectronics Engineering,Tianjin University;Key Laboratory of Optoelectronic Information Technology(Ministry of Education of China),Tianjin University;School of Optoelectronic Engineering and Instrumentation Science,Dalian University of Technology;Georgia Tech Shenzhen Institute(GTSI),Tianjin University;

【通讯作者】 曹暾;田震;

【机构】 天津大学精密仪器与光电子工程学院太赫兹波研究中心天津大学光电信息技术教育部重点实验室大连理工大学光电工程与仪器科学学院天津大学佐治亚理工深圳学院

【摘要】 超表面在控制电磁波的强度、相位、偏振和复杂波前等方面发挥了重要的作用,通过与各种主动调控手段结合可实现动态可调谐器件。本文分析总结了近期基于Ge2Sb2Te5(GST)的太赫兹超表面器件的研究进展,介绍了GST在太赫兹波段的光谱特性和可逆相变条件,重点回顾了GST与超表面设计相结合用于实现对太赫兹波的振幅、偏振以及波前的非易失、可重构、和多级操纵的前沿研究工作,并讨论展望了未来的发展前景和需要解决的问题。

【Abstract】 Metasurfaces play an important role in controlling the amplitude, phase, polarization, and complex wavefront of electromagnetic waves. Dynamic tunable devices can be realized by combining various active modulation means. However, most of the existing reconfigurable devices have volatile properties that require a constant stimulus to maintain. The chalcogenide phase-change material Ge2Sb2Te5(GST) has the characteristics of non-volatility, reconfigurability, and large optical contrast, which can be used to achieve tunable metasurface devices. In this review, we review the recent research progress of GST-based terahertz(THz) metasurface devices and introduce the spectral characteristics and reversible phase transition conditions of GST in the THz band.Furthermore, we systematically summarizes the relevant works on non-volatile, reconfigurable, and multi-level manipulation of THz amplitude, polarization, and wavefront by combining GST with metasurfaces. Finally, the future development prospects and challenges are discussed. The non-volatile nature of GST provides a new path to achieve non-volatile reconfigurable THz devices with low energy consumption, while its ultra-fast volatility can be used for next-generation high-speed communication.

【关键词】 相变材料超表面太赫兹可重构
【Key words】 phase change materialmetasurfaceterahertzreconfigurable
【基金】 国家自然科学基金项目(62235013);天津市杰出青年基金项目(20JCJQJC00190);深圳市自然科学基金重点基金项目(JCYJ20200109150212515);深圳市国际合作研究项目(GJHZ20210705142401004)~~
  • 【文献出处】 光电工程 ,Opto-Electronic Engineering , 编辑部邮箱 ,2023年09期
  • 【分类号】TB34;O441.4
  • 【下载频次】36
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