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首页> 外文期刊>Advanced Materials >Electrically Tunable Singular Phase and Goos-Haenchen Shifts in Phase-Change-Material-Based Thin-Film Coatings as Optical Absorbers
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Electrically Tunable Singular Phase and Goos-Haenchen Shifts in Phase-Change-Material-Based Thin-Film Coatings as Optical Absorbers

机译:作为光学吸收剂的相变材料基薄膜涂层电可调谐奇异相和GoOS-Haenchen换档

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摘要

The change of the phase of light under the evolution of a nanomaterial with time is a promising new research direction. A phenomenon directly related to the sudden phase change of light is the Goos-Hanchen (G-H) shift, which describes the lateral beam displacement of the reflected light from the interface of two media when the angles of incidence are close to the total internal reflection angle or Brewster angle. Here, an innovative design of lithography-free nanophotonic cavities to realize electrically tunable G-H shifts at the singular phase of light in the visible wavelengths is reported. Reversible electrical tuning of phase and G-H shifts is experimentally demonstrated using a microheater integrated optical cavity consisting of a dielectric film on an absorbing substrate through a Joule heating mechanism. In particular, an enhanced G-H shift of 110 times of the operating wavelength at the Brewster angle of the thin-film cavity is reported. More importantly, electrically tunable G-H shifts are demonstrated by exploiting the significant tunable phase change that occurs at the Brewster angles, due to the small temperature-induced refractive index changes of the dielectric film. Realizing efficient electrically tunable G-H shifts with miniaturized heaters will extend the research scope of the G-H shift phenomenon and its applications.
机译:随着时间的推移,纳米材料的演化下光的变化是一个有前途的新的研究方向。与突然相变的光的现象是Goos-hanchen(GH)偏移,其描述当入射角接近全内反射角的两个介质的界面时,描述了反射光的横向束位移或布鲁斯特角。这里,报道了一种用于在可见波长中的光的单个光相位处实现可电动的无纳米光子腔的创新设计。通过通过焦耳加热机构在吸收基板上由吸收基板上由介电膜组成的微热器集成光学腔进行实验证明相位和G-H偏移的可逆电调整。特别地,报道了薄膜腔的布鲁斯特角处的110倍的增强的G-H偏移110次。更重要的是,由于介电膜的小的温度诱导的折射率变化,通过利用在布鲁斯特角处发生的显着可调谐相变的电动调谐G-H偏移。实现具有小型化加热器的有效电调谐G-H偏移将扩展G-H变速现象及其应用的研究范围。

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  • 来源
    《Advanced Materials》 |2021年第15期|2006926.1-2006926.8|共8页
  • 作者单位

    Nanyang Technol Univ Sch Phys & Math Sci Div Phys & Appl Phys Singapore 637371 Singapore|Nanyang Technol Univ Ctr Disrupt Photon Technol Photon Inst Singapore 637371 Singapore;

    Nanyang Technol Univ Sch Elect & Elect Engn Singapore 639798 Singapore|Nanyang Technol Univ CINTRA CNRS NTU THALES UMI 3288 Res Techno Plaza 50 Nanyang Dr Singapore 637553 Singapore;

    Nanyang Technol Univ Natl Inst Educ Nat Sci & Sci Educ Singapore 637616 Singapore;

    Nanyang Technol Univ Natl Inst Educ Nat Sci & Sci Educ Singapore 637616 Singapore;

    Nanyang Technol Univ Sch Elect & Elect Engn Singapore 639798 Singapore|Nanyang Technol Univ CINTRA CNRS NTU THALES UMI 3288 Res Techno Plaza 50 Nanyang Dr Singapore 637553 Singapore;

    Nanyang Technol Univ Natl Inst Educ Nat Sci & Sci Educ Singapore 637616 Singapore;

    Nanyang Technol Univ Sch Elect & Elect Engn Singapore 639798 Singapore;

    Nanyang Technol Univ Sch Phys & Math Sci Div Phys & Appl Phys Singapore 637371 Singapore|Nanyang Technol Univ Ctr Disrupt Photon Technol Photon Inst Singapore 637371 Singapore;

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

    chalcogenide phase#8208; change materials; generalized Brewster angle; Goos#8211; H#228; nchen shift; microheaters; reconfigurable optical structures; thin#8208; film optical absorbers;

    机译:硫属化物阶段‐改变材料;概括的布鲁斯特角;goos–hänchen shift;微热器;可重新配置的光学结构;薄‐薄膜光学吸收剂;

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