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首页> 外文期刊>Nature Communications >Ultrafast all-optical tuning of direct-gap semiconductor metasurfaces
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Ultrafast all-optical tuning of direct-gap semiconductor metasurfaces

机译:直缝半导体超表面的超快全光调谐

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Optical metasurfaces are regular quasi-planar nanopatterns that can apply diverse spatial and spectral transformations to light waves. However, metasurfaces are no longer adjustable after fabrication, and a critical challenge is to realise a technique of tuning their optical properties that is both fast and efficient. We experimentally realise an ultrafast tunable metasurface consisting of subwavelength gallium arsenide nanoparticles supporting Mie-type resonances in the near infrared. Using transient reflectance spectroscopy, we demonstrate a picosecond-scale absolute reflectance modulation of up to 0.35 at the magnetic dipole resonance of the metasurfaces and a spectral shift of the resonance by 30?nm, both achieved at unprecedentedly low pump fluences of less than 400?μJ?cm–2. Our findings thereby enable a versatile tool for ultrafast and efficient control of light using light.
机译:光学超表面是规则的准平面纳米图案,可以将各种空间和光谱变换应用于光波。然而,超表面在制造之后不再可调节,并且关键的挑战是实现一种既快速又有效的调整其光学特性的技术。我们通过实验实现了一个超快的可调亚表面,该亚表面由亚波长砷化镓纳米粒子组成,可支持近红外Mie型共振。使用瞬态反射光谱法,我们证明了在超颖表面的磁偶极子共振处皮秒级的绝对反射率调制高达0.35,并且共振的光谱位移为30?nm,这两者均以前所未有的低泵浦注量小于400?m实现。 μJ?cm–2。因此,我们的发现为使用光超快速有效地控制光提供了一种多功能工具。

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