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布朗运动在设计力场中:负折射对纳米粒子的动力学影响。

Brownian motion in a designer force field: dynamical effects of negative refraction on nanoparticles.

机构信息

ISIS & icFRC, University of Strasbourg and CNRS, 8 allée Gaspard Monge, 67000 Strasbourg, France.

出版信息

Nano Lett. 2012 Aug 8;12(8):4329-32. doi: 10.1021/nl302060t. Epub 2012 Jul 20.

Abstract

Photonic crystals (PC) have demonstrated unique features that have renewed the fields of classical and quantum optics. Although holding great promises, associated mechanical effects have proven challenging to observe. We demonstrate for the first time that one of the most salient properties of PC, namely negative refraction, can induce specific forces on metal nanoparticles. By integrating a periodically patterned metal film in a fluidic cell, we show that near-field optical forces associated with negatively refracted surface plasmons are capable of controlling particle trajectories. Coupling particle motions to PC band structures draws new approaches and strategies for parallel and high resolution all-optical control of particle flows with applications for micro- and nanofluidic systems.

摘要

光子晶体(PC)具有独特的特性,为经典光学和量子光学领域带来了新的活力。尽管具有很大的潜力,但相关的机械效应的观察证明具有挑战性。我们首次证明,PC 的最显著特性之一,即负折射,可以在金属纳米粒子上诱导特定的力。通过在流体制动中集成周期性图案化的金属膜,我们表明与负折射表面等离子体相关的近场光学力能够控制粒子轨迹。将粒子运动与 PC 能带结构耦合,为微纳流控系统中具有应用前景的粒子流的平行和高分辨率全光控制提供了新的方法和策略。

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