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Monte Carlo Simulation of FCS in a Laser Gradient Field

机译:激光梯度场中FCS的蒙特卡罗模拟

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Fluorescence Correlation Spectroscopy (FCS) is an attractive technique for probing the molecular inetics in solutions. However, gradient field due to a focused intense laser field may affect the measured results. Since finding an anlaytical solution of the diffusion equation in a gradient field is not easy, we developed a Monte Carlo method to simulate Browning motion of Rayleigh particles in a laser gradient field. Effects corresponding to different parameters were tested in the simulation. Simulated results for zero gradient field agree well with the analytical solution, which has been used in all the conventional FCS measurements. Simulated results with gradient fields indicate changes in the fitted diffusion time and the average number of fluorescent spheres (N) in the effective volume. The simulated results agree qualitatively to the experimental results obtained using fluorescent spheres. Empirical relations from the simulation are discussed.
机译:荧光相关光谱(FCS)是一种用于探测溶液中分子无病学的有吸引力的技术。然而,由于聚焦强激光场引起的梯度场可能会影响测量结果。由于发现梯度场中的扩散方程的共扩散方程的共同解决方案不容易,因此我们开发了一种蒙特卡罗方法,以模拟激光梯度场中的瑞利颗粒的褐变运动。在模拟中测试了对应于不同参数的效果。零梯度字段的模拟结果与分析解决方案很好,其已在所有传统的FCS测量中使用。具有梯度场的模拟结果表示有效体积中拟合扩散时间和荧光球(n)的平均数量的变化。模拟结果定性地达到使用荧光球获得的实验结果。讨论了模拟的经验关系。

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