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Nanometer optical trap based on stimulated emission in evanescence of a totally reflected Arago spot Nanometer optical trap for fluorescent nanoparticles

机译:基于荧光纳米粒子的完全反射的Arago点纳米光学阱的刺激的纳米光阱

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摘要

Optical tweezers have paved the way towards the manipulation of particles and living cells at the micrometer range. Its extension towards the nanometer world may create unprecedented potentialities in many areas of science. Following a letter (O. Emile, J. Emile, H. Tabuteau, EPL 129, 58001 (2020)) that reported the observation of the trapping of a single 200nm diameter fluorescent particle in a nanometric volume, we detail here our experimental findings. In particular, the trapping mechanism is shown to be based on the radiation pressure of light in one direction and on the stimulated emission of the particle in the evanescent wave of a nanometer Arago spot on a glass/liquid interface on the other directions. The trapping volume is a 200nm height cylinder whose radius varies with the spreading of the evanescent wave near the spot and can reach 50nm. The calculation of the force and the parameters limiting the lifetime are detailed. Applications to laser trapping of atoms and molecules are also discussed.
机译:光镊为在微米范围内操纵粒子和活细胞铺平了道路。它向纳米世界的延伸可能会在许多科学领域创造前所未有的潜力。在一封信(O.Emile,J.Emile,H.Tabuteau,EPL 129,58001(2020))报告了在纳米体积中观察到单个直径为200nm的荧光粒子被捕获后,我们在此详述了我们的实验结果。特别是,捕获机制基于光在一个方向上的辐射压力,以及粒子在玻璃/液体界面上的纳米Arago斑点的倏逝波中在其他方向上的受激发射。捕获体积是一个200nm高的圆柱体,其半径随光斑附近倏逝波的传播而变化,可以达到50nm。详细介绍了力的计算和限制寿命的参数。还讨论了激光捕获原子和分子的应用。

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