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Controlled Formation of Optically Bound Matter in Evanescent Fields

机译:在渐逝场中的光学束缚物质控制形成

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In this paper, we detail two techniques for standing wave evanescent field optical trapping utilizing total internal reflection at a prism-water interface. Firstly, we describe an actively-locked cavity enhancement technique that generates circulating powers in excess of 10 W over an area of 150 pm x 75 gm on the prism surface using a 400 mW source, as well as providing control over the shape of the underlying transverse cavity mode. Secondly, we have combined an inverted optical tweezers with a counter-propagating evanescent wave trapping experiment, providing a useful platform for exploring light scattering interactions between small ensembles of particles. The resulting structures are compared to our theoretical model based upon Generalised Lorentz-Mie Theory.
机译:在本文中,我们详细介绍了一种利用棱镜水界面的全内反射常设波渐逝场光学捕获技术。首先,我们描述了一种积极锁定的腔增强技术,其使用400 MW源在棱镜表面上产生超过10W的超过10W的循环功率,以及提供对底层形状的控制横腔模式。其次,我们已经将倒光学镊子组合具有反传播的渐逝波捕获实验,提供了一种用于探索小型颗粒的小型散射相互作用的有用平台。基于广义的Lorentz-mie理论,将所得结构与我们的理论模型进行比较。

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