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Extreme fluctuations of active Brownian motion

机译:主动布朗运动的极大波动

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In active Brownian motion, an internal propulsion mechanism interacts with translational and rotational thermal noise and other internal fluctuations to produce directed motion. We derive the distribution of its extreme fluctuations and identify its universal properties using large deviation theory. The limits of slow and fast internal dynamics give rise to a kink-like and parabolic behavior of the corresponding rate functions, respectively. For dipolar Janus particles in two- and three-dimensions interacting with a field, we predict a novel symmetry akin to, but different from, the one related to entropy production. Measurements of these extreme fluctuations could thus be used to infer properties of the underlying, often hidden, network of states.
机译:在主动布朗运动中,内部推进机制与平移和旋转热噪声以及其他内部波动相互作用,以产生定向运动。我们导出其极端波动的分布,并使用大偏差理论确定其普遍性质。缓慢和快速内部动力学的极限分别导致相应速率函数的扭结状和抛物线状。对于二维和三维与场相互作用的偶极Janus粒子,我们预测了一种类似于但不同于与熵产生有关的对称性。这些极端波动的测量因此可以用来推断潜在的,通常是隐藏的状态网络的属性。

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