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High trapping forces for high-refractive index particles trapped in dynamic arrays of counterpropagating optical tweezers

机译:高对向力光镊子动态阵列中捕获的高折射率粒子的捕获力

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摘要

We demonstrate the simultaneous trapping of multiple high-refractive index (n > 2) particles in a dynamic array of counterpropagating optical tweezers in which the destabilizing scattering forces are canceled. These particles cannot be trapped in single-beam optical tweezers. The combined use of two opposing high-numerical aperture objectives and micrometer-sized high-index titania particles yields an at least threefold increase in both axial and radial trap stiffness compared to silica particles under the same conditions. The stiffness in the radial direction is obtained from measured power spectra; calculations are given for both the radial and the axial force components, taking spherical aberrations into account. A pair of acousto-optic deflectors allows for fast, computer-controlled manipulation of the individual trapping positions in a plane, while the method used to create the patterns ensures the possibility of arbitrarily chosen configurations. The manipulation of high-index particles finds its application in, e.g., creating defects in colloidal photonic crystals and in exerting high forces with low laser power in, for example, biophysical experiments
机译:我们展示了同时捕获多个高折射率(n> 2)粒子在反向传播的光镊的动态阵列中,其中消除了不稳定的散射力。这些粒子不能被捕获在单光束光镊中。与相同条件下的二氧化硅粒子相比,两个相对的高数值孔径物镜和微米级的高折射率二氧化钛粒子的组合使用可使轴向和径向陷阱刚度至少增加三倍。径向的刚度是从测得的功率谱获得的。考虑到球面像差,给出了径向和轴向力分量的计算。一对声光偏转器可实现对平面中各个陷印位置的快速计算机控制操作,而用于创建图案的方法可确保任意选择配置的可能性。在例如生物物理实验中,高折射率颗粒的操纵可用于例如在胶体光子晶体中产生缺陷,以及以低激光功率施加高力。

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