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Forces of a single-beam gradient laser trap on a dielectric sphere in the ray optics regime

机译:在射线光学条件下单光束梯度激光阱在介电球面上的作用力

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摘要

We calculate the forces of single-beam gradient radiation pressure laser traps, also called “optical tweezers,” on micron-sized dielectric spheres in the ray optics regime. This serves as a simple model system for describing laser trapping and manipulation of living cells and organelles within cells. The gradient and scattering forces are defined for beams of complex shape in the ray-optics limit. Forces are calculated over the entire cross-section of the sphere using TEM00 and TEM01* mode input intensity profiles and spheres of varying index of refraction. Strong uniform traps are possible with force variations less than a factor of 2 over the sphere cross-section. For a laser power of 10 mW and a relative index of refraction of 1.2 we compute trapping forces as high as ∼ 1.2 × 10-6 dynes in the weakest (backward) direction of the gradient trap. It is shown that good trapping requires high convergence beams from a high numerical aperture objective. A comparison is given of traps made using bright field or differential interference contrast optics and phase contrast optics.
机译:我们在射线光学系统中计算微米级介电球上的单光束梯度辐射压力激光阱(也称为“光学镊子”)的作用力。这是一个简单的模型系统,用于描述激光捕获以及活细胞和细胞内细胞器的操纵。在光线极限内为复杂形状的光束定义了梯度力和散射力。使用TEM00和TEM01 * 模式输入强度分布图和具有不同折射率的球体,计算球体整个横截面上的力。在球体横截面上力的变化小于2倍的情况下,可能会形成坚固而均匀的陷阱。对于10 mW的激光功率和1.2的相对折射率,我们计算出在梯度阱的最弱(向后)方向上的捕获力高达〜1.2×10 -6 达因。结果表明,良好的陷获需要来自高数值孔径物镜的高会聚光束。比较了使用明场或差分干涉对比光学器件和相位对比光学器件制成的阱。

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