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光子扭矩显微镜测量光阱硅纳米线的非保守力场。

Photonic Torque Microscopy of the Nonconservative Force Field for Optically Trapped Silicon Nanowires.

机构信息

CNR-IPCF, Istituto per i Processi Chimico-Fisici , I-98158 Messina, Italy.

MATIS CNR-IMM and Dipartimento di Fisica e Astronomia, Università di Catania , I-95123, Catania, Italy.

出版信息

Nano Lett. 2016 Jul 13;16(7):4181-8. doi: 10.1021/acs.nanolett.6b01059. Epub 2016 Jun 13.

Abstract

We measure, by photonic torque microscopy, the nonconservative rotational motion arising from the transverse components of the radiation pressure on optically trapped, ultrathin silicon nanowires. Unlike spherical particles, we find that nonconservative effects have a significant influence on the nanowire dynamics in the trap. We show that the extreme shape of the trapped nanowires yields a transverse component of the radiation pressure that results in an orbital rotation of the nanowire about the trap axis. We study the resulting motion as a function of optical power and nanowire length, discussing its size-scaling behavior. These shape-dependent nonconservative effects have implications for optical force calibration and optomechanics with levitated nonspherical particles.

摘要

我们通过光子扭矩显微镜测量了由光学捕获的超薄硅纳米线的辐射压力的横向分量引起的非保守旋转运动。与球形颗粒不同,我们发现非保守效应对纳米线在陷阱中的动力学有显著影响。我们表明,捕获纳米线的极端形状产生了辐射压力的横向分量,导致纳米线绕陷阱轴进行轨道旋转。我们研究了作为光学功率和纳米线长度函数的结果运动,讨论了其尺寸缩放行为。这些依赖于形状的非保守效应对悬浮非球形颗粒的光学力校准和光机械学具有重要意义。

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