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首页> 外文期刊>Multiscale modeling & simulation >MEAN FIRST PASSAGE TIME FOR A SMALL ROTATING TRAP INSIDE A REFLECTIVE DISK
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MEAN FIRST PASSAGE TIME FOR A SMALL ROTATING TRAP INSIDE A REFLECTIVE DISK

机译:在反射盘内进行小旋转陷阱的平均第一通行时间

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摘要

We compute the mean first passage time (MFPT) for a Brownian particle inside a two-dimensional disk with reflective boundaries and a small interior trap that is rotating at a constant angular velocity. The inherent symmetry of the problem allows for a detailed analytic study of the situation. For a given angular velocity, we determine the optimal radius of rotation that minimizes the average MFPT over the disk. Several distinct regimes are observed, depending on the ratio between the angular velocity omega and the trap size epsilon, and several intricate transitions are analyzed using the tools of asymptotic analysis and Fourier series. For omega similar to O(1), we compute a critical value omega(c) > 0 such that the optimal trap location is at the origin whenever omega < omega(c) and is off the origin for omega > omega(c). In the regime 1 omega O(epsilon(-1)) the optimal trap path approaches the boundary of the disk. However, as. is further increased to O(epsilon(-1)), the optimal trap path "jumps" closer to the origin. Finally, for omega O(epsilon(-1)) the optimal trap path subdivides the disk into two regions of equal area. This simple geometry provides a good test case for future studies of MFPT with more complex trap motion.
机译:我们计算具有反射边界和以恒定角速度旋转的小内部陷阱的二维圆盘内布朗粒子的平均首次通过时间(MFPT)。问题固有的对称性可以对情况进行详细的分析研究。对于给定的角速度,我们确定了使磁盘上的平均MFPT最小的最佳旋转半径。根据角速度ω和阱尺寸ε的比值,观察到几种不同的状态,并使用渐近分析和傅里叶级数工具分析了一些复杂的跃迁。对于类似于O(1)的omega,我们计算临界值omega(c)> 0,以便当omega omega(c)时偏离最佳原点。在方案1 omega O(epsilon(-1))中,最佳陷阱路径接近磁盘的边界。但是,作为。进一步增加到O(epsilon(-1)),最佳陷阱路径“跳”得更靠近原点。最后,对于ω O(epsilon(-1)),最佳陷阱路径将磁盘细分为两个相等面积的区域。这种简单的几何形状为陷波器运动更为复杂的MFPT的未来研究提供了很好的测试案例。

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