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Optical forces on a nonlinear optical Rayleigh particle induced by high- repetition-rate femtosecond laser pulses

机译:高重复率飞秒激光脉冲在非线性瑞利粒子上产生的光学力

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The principle of optical trapping is conventionally based on the interaction of optical fields with linear-induced polarizations. However, the optical force originating from the nonlinear polarization becomes significant when nonlinear optical nanoparticles are trapped by femtosecond laser pulses. Herein we develop the time-averaged optical forces on a nonlinear optical nanoparticle using high-repetition-rate femtosecond laser pulses, based on the linear and nonlinear polarization effects. We investigate the characteristics of transverse and longitudinal optical forces for particles exhibiting self-focusing and defocusing effects. It is shown that the self-focusing effect increases the trapping force strength and improves the confinement of particles, whereas the self-defocusing effect leads to the splitting of potential well at the focal plane and destabilizes the optical trap, resulting in ejections of trapped particles along the direction of the beam's propagation. The optical forces exerted on the nonlinear optical particles are experimentally related to the trapping stiffness. It is expected that the self-focusing (or self-defocusing) effect increases (or decreases) the trapping efficiency and stiffness. Our results successfully explain the reported experimental observations and provide theoretical support for capturing nonlinear nanoparticles with femtosecond laser trapping.
机译:光学陷波的原理通常基于光场与线性感应偏振的相互作用。然而,当非线性光学纳米粒子被飞秒激光脉冲捕获时,源自非线性偏振的光学力就变得很重要。在此,我们基于线性和非线性偏振效应,使用高重复率飞秒激光脉冲来开发非线性光学纳米粒子上的时均光学力。我们研究了表现出自聚焦和散焦效果的粒子的横向和纵向光学力的特性。结果表明,自聚焦效应增加了俘获力强度并改善了粒子的约束,而自散焦效应导致了焦平面处势阱的分裂并破坏了光阱的稳定性,从而导致被俘获的粒子射出。沿着光束的传播方向。施加在非线性光学粒子上的光学力在实验上与俘获刚度有关。可以预期,自聚焦(或自散焦)效果会提高(或降低)捕获效率和刚度。我们的结果成功地解释了所报道的实验观察结果,并为用飞秒激光俘获捕获非线性纳米粒子提供了理论支持。

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