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Optothermal escape of plasmonically coupled silver nanoparticles from a three-dimensional optical trap

机译:等离子体耦合的银纳米粒子从三维光学陷阱的光热逸出

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摘要

We demonstrate that optical trapping of multiple silver nanoparticles is strongly influenced by plasmonic coupling of the nanoparticles. Employing dark-field Rayleigh scattering imaging and spectroscopy on multiple silver nanoparticles optically trapped in three dimensions, we experimentally investigate the time-evolution of the coupled plasmon resonance and its influence on the trapping stability. With time the coupling strengthens, which is observed as a gradual red shift of the coupled plasmon scattering. When the coupled plasmon becomes resonant with the trapping laser wavelength, the trap is destabilized and nanoparticles are released from the trap. Modeling of the trapping potential and its comparison to the plasmonic heating efficiency at various nanoparticle separation distances suggests a thermal mechanism of the trap destabilization. Our findings provide insight into the specificity of three-dimensional optical manipulation of plasmonic nanostructures suitable for field enhancement, for example for surface-enhanced Raman scattering.
机译:我们证明,多个银纳米粒子的光阱受到纳米粒子的等离子体耦合的强烈影响。利用暗场瑞利散射成像和光谱学对在三个维度上被光学俘获的多个银纳米粒子,我们实验研究了耦合等离子体激元共振的时间演化及其对俘获稳定性的影响。随着时间的流逝,耦合增强,这被视为耦合等离子体激元散射的逐渐红移。当耦合的等离子体激元与捕获激光波长发生共振时,捕获器不稳定,纳米粒子从捕获器中释放出来。捕集势的建模及其在各种纳米粒子分离距离下与等离子体激元加热效率的比较表明,捕集阱不稳定的热机制。我们的发现提供了对等离子纳米结构的三维光学操作的特异性的见解,该等离子体适合于场增强,例如用于表面增强拉曼散射。

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