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Frequency-Agile Temporal Terahertz Metamaterials

机译:频率敏捷时间Terahertz超材料

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摘要

Spatiotemporal manipulation of electromagnetic waves has recently enabled a plethora of exotic optical functionalities, such as non-reciprocity, dynamic wavefront control, unidirectional transmission, linear frequency conversion, and electromagnetic Doppler cloak. Here, an additional dimension is introduced for advanced manipulation of terahertz waves in the space-time, and frequency domains through integration of spatially reconfigurable microelectromechanical systems and photoresponsive material into metamaterials. A large and continuous frequency agility is achieved through movable microcantilevers. The ultrafast resonance modulation occurs upon photoexcitation of ion-irradiated silicon substrate that hosts the microcantilever metamaterial. The fabricated metamaterial switches in 400 ps and provides large spectral tunability of 250 GHz with 100% resonance modulation at each frequency. The integration of perfectly complementing technologies of microelectromechanical systems, femtosecond optical control and ion-irradiated silicon provides unprecedented concurrent control over space, time, and frequency response of metamaterial for designing frequency-agile spatiotemporal modulators, active beamforming, and low-power frequency converters for the next generation terahertz wireless communications.
机译:电磁波的时空操纵最近能够实现异国情调的光学功能,例如非互动,动态波前控制,单向传输,线性变频器和电磁多普勒斗篷。这里,通过将空间可重新配置的微机电系统和光散装材料集成到超材料中,引入了额外的尺寸来提前操纵太赫兹波和频域。通过可移动的微电子实现了大型和连续的频率敏捷性。超速谐振调制发生在托管微导体超材料的离子照射的硅衬底的光焦。 400 PS中制造的超材料开关,并在每个频率下提供了250GHz的大谱调可调性,每个频率为100%的共振调制。微机电系统,飞秒光学控制和离子辐照硅的完美补充技术的整合提供了前所未有的同时控制超空间,时间和模拟用于设计频率敏捷时空调制器,主动波束形成和低功耗频率转换器的空间,时间和频率响应下一代Terahertz无线通信。

著录项

  • 来源
    《Advanced Optical Materials》 |2020年第12期|2000101.1-2000101.8|共8页
  • 作者单位

    Nanyang Technol Univ Sch Phys & Math Sci Div Phys & Appl Phys 21 Nanyang Link Singapore 637371 Singapore|Photon Inst Ctr Disrupt Photon Technol 50 Nanyang Ave Singapore 639798 Singapore|ASTAR Inst Microelect 2 Fusionopolis Way Singapore 138634 Singapore;

    Nanyang Technol Univ Sch Phys & Math Sci Div Phys & Appl Phys 21 Nanyang Link Singapore 637371 Singapore|Photon Inst Ctr Disrupt Photon Technol 50 Nanyang Ave Singapore 639798 Singapore;

    Natl Univ Singapore NUSNNI NanoCore Singapore 117411 Singapore|Natl Univ Singapore Dept Phys Ctr Ion Beam Applicat CIBA Singapore 117542 Singapore;

    Natl Univ Singapore NUSNNI NanoCore Singapore 117411 Singapore|Natl Univ Singapore NUS Grad Sch Integrat Sci & Engn Singapore 117456 Singapore;

    ASTAR Inst Microelect 2 Fusionopolis Way Singapore 138634 Singapore;

    Natl Univ Singapore Dept Phys Ctr Ion Beam Applicat CIBA Singapore 117542 Singapore|Natl Univ Singapore Dept Phys Singapore 117542 Singapore;

    Natl Univ Singapore NUSNNI NanoCore Singapore 117411 Singapore|Natl Univ Singapore NUS Grad Sch Integrat Sci & Engn Singapore 117456 Singapore|Natl Univ Singapore Dept Phys Singapore 117542 Singapore|Natl Univ Singapore Dept Elect & Comp Engn Singapore 117583 Singapore|Natl Univ Singapore Dept Mat Sci & Engn Singapore 117575 Singapore;

    Natl Univ Singapore Dept Elect & Comp Engn Singapore 117583 Singapore;

    Nanyang Technol Univ Sch Phys & Math Sci Div Phys & Appl Phys 21 Nanyang Link Singapore 637371 Singapore|Photon Inst Ctr Disrupt Photon Technol 50 Nanyang Ave Singapore 639798 Singapore;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    microelectromechanical systems; multifunctional; spatiotemporal metamaterials; ultrafast; terahertz;

    机译:微机电系统;多功能;时空超材料;超快;太赫兹;

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