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亚微米粒子光学诱导晶体中的布拉格散射和布朗运动动力学

Bragg scattering and Brownian motion dynamics in optically induced crystals of submicron particles.

作者信息

Sapiro R E, Slama B N, Raithel G

机构信息

Department of Physics, University of Michigan, Ann Arbor, Michigan 48109, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2013 May;87(5):052311. doi: 10.1103/PhysRevE.87.052311. Epub 2013 May 29.

Abstract

A set of four confocal laser beams of 1064-nm wavelength is used to prepare optically induced crystals of submicron particles in aqueous solution. Thousands of polystyrene spheres of about 200 nm in diameter are trapped in three dimensions. Bragg scattering patterns obtained with a probe beam of 532-nm wavelength are in agreement with the calculated lattice structure and its polarization dependence. The decay and rise of the Bragg scattering intensity upon switching the lattice off and on reveal the Brownian motion dynamics of the particles in the periodic optical trapping potential. Experimental results agree well with results from trajectory simulations based on the Langevin equation. The results exhibit the interplay between Brownian motion and deterministic forces in an inhomogeneous (near-)periodic optical trapping potential.

摘要

使用一组波长为1064纳米的四个共焦激光束在水溶液中制备亚微米颗粒的光诱导晶体。数千个直径约200纳米的聚苯乙烯球体被三维捕获。用波长为532纳米的探测光束获得的布拉格散射图案与计算出的晶格结构及其偏振依赖性一致。晶格开启和关闭时布拉格散射强度的衰减和上升揭示了周期性光学捕获势中粒子的布朗运动动力学。实验结果与基于朗之万方程的轨迹模拟结果吻合良好。结果展示了在非均匀(近)周期性光学捕获势中布朗运动与确定性力之间的相互作用。

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