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Transverse spin forces and non-equilibrium particle dynamics in a circularly polarized vacuum optical trap

机译:圆偏振真空光阱中的横向自旋力和非平衡粒子动力学

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摘要

We provide a vivid demonstration of the mechanical effect of transverse spin momentum in an optical beam in free space. This component of the Poynting momentum was previously thought to be virtual, and unmeasurable. Here, its effect is revealed in the inertial motion of a probe particle in a circularly polarized Gaussian trap, in vacuum. Transverse spin forces combine with thermal fluctuations to induce a striking range of non-equilibrium phenomena. With increasing beam power we observe (i) growing departures from energy equipartition, (ii) the formation of coherent, thermally excited orbits and, ultimately, (iii) the ejection of the particle from the trap. As well as corroborating existing measurements of spin momentum, our results reveal its dynamic effect. We show how the under-damped motion of probe particles in structured light fields can expose the nature and morphology of optical momentum flows, and provide a testbed for elementary non-equilibrium statistical mechanics.
机译:我们生动地展示了自由空间光束中横向自旋动量的机械效应。以前认为,珀因丁势头的这一部分是虚拟的,无法衡量。在这里,它的作用通过真空中圆极化高斯阱中探针粒子的惯性运动来揭示。横向自旋力与热涨落相结合,引起一系列非平衡现象。随着束功率的增加,我们观察到(i)能量均分的偏离越来越大,(ii)相干的热激发轨道的形成,以及最终(iii)粒子从阱中射出。除了证实自旋动量的现有度量外,我们的结果还揭示了其动态效果。我们展示了结构化的光场中探针粒子的欠阻尼运动如何能够揭示光动量流的性质和形态,并为基本的非平衡统计力学提供了一个测试平台。

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