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Characterizing conical refraction optical tweezers

机译:表征锥形折射光镊

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Conical refraction occurs when a beam of light travels through an appropriately cut biaxial crystal. By focusing the conically refracted beam through a high numerical aperture microscope objective, conical refraction optical tweezers can be created, allowing for particle manipulation in both Raman spots, and in the Lloyd/Poggendorff rings. We present a thorough quantification of the trapping properties of such a beam, focusing on the trap stiffness, and how this varies with trap power and trapped particle location. We show that the lower Raman spot can be thought of as a single-beam optical gradient force trap, while radiation pressure dominates in the upper Raman spot, leading to optical levitation rather than trapping. Particles in the Lloyd/Poggendorff rings experience a lower trap stiffness than particles in the lower Raman spot, but benefit from rotational control. (C) 2014 Optical Society of America
机译:当光束穿过适当切割的双轴晶体时,会发生圆锥折射。通过将锥形折射光束聚焦通过高数值孔径显微镜物镜,可以创建锥形折射光学镊子,从而允许在拉曼点和Lloyd / Poggendorff环中进行粒子操纵。我们对这种光束的俘获特性进行了全面的量化,重点是陷阱的刚度,以及其如何随陷阱功率和被俘获的粒子位置而变化。我们表明,较低的拉曼光斑可以被认为是单光束光学梯度力阱,而辐射压力在较高的拉曼光斑中占主导地位,从而导致光学悬浮而不是捕获。 Lloyd / Poggendorff环中的粒子比低拉曼点中的粒子具有较低的陷阱刚度,但受益于旋转控制。 (C)2014年美国眼镜学会

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