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Active escape dynamics: The effect of persistence on barrier crossing

机译:主动逃生动态:持久性对障碍交叉的影响

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We study a system of non-interacting active particles, propelled by colored noises, characterized by an activity time tau, and confined by a double-well potential. A straightforward application of this system is the problem of barrier crossing of active particles, which has been studied only in the limit of small activity. When tau is sufficiently large, equilibrium-like approximations break down in the barrier crossing region. In the model under investigation, it emerges as a sort of "negative temperature" region, and numerical simulations confirm the presence of non-convex local velocity distributions. We propose, in the limit of large tau, approximate equations for the typical trajectories which successfully predict many aspects of the numerical results. The local breakdown of detailed balance and its relation with a recent definition of non-equilibrium heat exchange is also discussed. Published under license by AIP Publishing.
机译:我们研究了由彩色噪声推进的非相互作用的活性颗粒系统,其特征在于活动时间tau,并限制为双井电位。 该系统的直接应用是活性颗粒的障碍交叉的问题,该问题仅在小型活动的极限中进行了研究。 当Tau足够大的,平衡的近似值在屏障交叉区域中分解。 在调查的模型中,它作为一种“负温”区域出现,数值模拟确认存在非凸局部速度分布。 我们提出了在大Tau的极限中,典型轨迹的近似方程,其成功预测数值结果的许多方面。 还讨论了详细余额的当地分类及其与最近定义非平衡热交换的关系。 通过AIP发布在许可证下发布。

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