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通过耦合局域等离子体和光子模式,金纳米粒子可以对超快速光调制进行定制和增强。

Coupling localized plasmonic and photonic modes tailors and boosts ultrafast light modulation by gold nanoparticles.

机构信息

†Laboratoire de Photonique Quantique et Moléculaire, UMR 8537-CNRS, Ecole Normale Supérieure de Cachan, CentraleSupélec, Grande Voie des Vignes, 92295 Châtenay-Malabry CEDEX, France.

§Laboratory of Nanomaterials, National Center for Nanoscience and Technology, Beiyitiao No. 11, Zhongguancun, Beijing 100190, P. R. China.

出版信息

Nano Lett. 2015 Apr 8;15(4):2633-9. doi: 10.1021/acs.nanolett.5b00226. Epub 2015 Mar 26.

Abstract

Plasmonic nanoparticles offer a broad range of functionalities, owing to their ability to amplify light in the near-field or convert it into heat. However, their ultrafast nonlinear optical response remains too low to envisage all-optical high-rate photonic processing applications. Here, we tackle this challenge by coupling the localized plasmon mode in gold nanoparticles with a localized photonic mode in a 1D resonant cavity. Despite the nonradiative losses, we demonstrate that a strong, reversible, and ultrafast optical modulation can be achieved. By using a light pumping fluence of less than 1 mJ cm(-2), a change of signal transmittance of more than 100% is generated within a few picosecond time scale. The nanoparticle transient optical response is enhanced by a factor of 30 to 40 while its spectral profile is strongly sharpened. The large nonlinear response of such plasmonic cavities could open new opportunities for ultrafast light processing at the nanoscale.

摘要

等离子体纳米粒子由于能够在近场中放大光或将其转化为热,因此具有广泛的功能。然而,它们的超快非线性光学响应仍然太低,无法实现全光高速光子处理应用。在这里,我们通过将金纳米粒子中的局域等离子体模式与一维共振腔中的局域光子模式耦合来解决这一挑战。尽管存在非辐射损耗,但我们证明可以实现强、可逆和超快的光学调制。通过使用低于 1 mJ cm(-2) 的光泵浦强度,在几皮秒的时间尺度内可以产生超过 100%的信号传输变化。纳米颗粒的瞬态光学响应增强了 30 到 40 倍,同时其光谱轮廓被强烈锐化。这种等离子体腔的大非线性响应可能为纳米尺度的超快光处理开辟新的机会。

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