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Intaneous symmetry breaking and circulation by optically bound microparticle chains in Gaussian beam traps

机译:高斯束阱中光学结合的微粒链的瞬时对称性破坏和循环。

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摘要

It has been known for some time that simple "optically bound" chains of dielectric microparticles can form in a counter propagating Gaussian beam optical trap. Here we report experimental observations of more complex trapped states, which do not reflect the underlying symmetry of the optical beam trap they are confined in. We discuss both stationary off-axis trapping and dynamic motion. We confirm the results using a rigorous Mie scattering model and also give a physical explanation for these static and dynamic off-axis trapped states.
机译:一段时间以来,人们已经知道,介电微粒的简单“光学结合”链可以在反向传播的高斯光束光阱中形成。在这里,我们报告了更复杂的陷波状态的实验观察结果,这些状态并不能反映它们所局限于的光束陷波的潜在对称性。我们讨论了固定离轴陷波和动态运动。我们使用严格的Mie散射模型确认了结果,并对这些静态和动态离轴捕获状态进行了物理解释。

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