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Optical trapping and control of nanoparticles inside evacuated hollow core photonic crystal fibers

机译:真空空心光子晶体光纤中纳米粒子的光捕获和控制

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摘要

We demonstrate an optical conveyor belt for levitated nanoparticles over several centimeters inside both air-filled and evacuated hollow-core photonic crystal fibers (HCPCF). Detection of the transmitted light field allows three-dimensional read-out of the particle center-of-mass motion. An additional laser enables axial radiation pressure based feedback cooling over the full fiber length. We show that the particle dynamics is a sensitive local probe for characterizing the optical intensity profile inside the fiber as well as the pressure distribution along the fiber axis. In contrast to some theoretical predictions, we find a linear pressure dependence inside the HCPCF, extending over three orders of magnitude from 0.2 mbar to 100 mbar. A targeted application is the controlled delivery of nanoparticles from ambient pressure into medium vacuum.
机译:我们演示了用于空气悬浮和抽空的空心光子晶体光纤(HCPCF)内几厘米处悬浮纳米粒子的光学传送带。透射光场的检测允许三维质点运动的三维读取。附加的激光器可以在整个光纤长度上实现基于轴向辐射压力的反馈冷却。我们表明,粒子动力学是一个灵敏的局部探针,用于表征纤维内部的光强分布以及沿纤维轴的压力分布。与一些理论预测相反,我们在HCPCF内部发现了线性压力依赖性,从0.2 mbar到100 mbar扩展了三个数量级。目标应用是将纳米颗粒从环境压力受控地输送到中等真空中。

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