二氧化二钒
吸光度
领域(数学)
材料科学
近场和远场
辐射传输
质量(理念)
钒
共振(粒子物理)
光电子学
纳米光子学
光学
物理
纳米技术
原子物理学
冶金
纯数学
量子力学
数学
薄膜
作者
Andreas Aigner,Filip Ligmajer,Katarína Rovenská,Jakub Holobrádek,Beáta Idesová,Stefan A. Maier,Andreas Tittl,Leonardo de S. Menezes
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-08-27
卷期号:24 (35): 10742-10749
标识
DOI:10.1021/acs.nanolett.4c01703
摘要
Active functionalities of metasurfaces are of growing interest in nanophotonics. The main strategy employed to date is spectral resonance tuning affecting predominantly the far-field response. However, this barely influences other essential resonance properties like near-field enhancement, signal modulation, quality factor, and absorbance, which are all vital for numerous applications. Here we introduce an active metasurface approach that combines temperature-tunable losses in vanadium dioxide with far-field coupling tunable symmetry-protected bound states in the continuum. This method enables exceptional precision in independently controlling both radiative and nonradiative losses. Consequently, it allows for the adjustment of both the far-field response and, notably, the near-field characteristics like local field enhancement and absorbance. We experimentally demonstrate continuous tuning from under- through critical- to overcoupling, achieving quality factors of 200 and a relative switching contrast of 78%. Our research marks a significant step toward highly tunable metasurfaces, controlling both near- and far-field properties.
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