Fluctuation relation in continuous-time random walks driven by an external field

IF 2.2 3区 物理与天体物理 Q2 MECHANICS Journal of Statistical Mechanics: Theory and Experiment Pub Date : 2023-12-18 DOI:10.1088/1742-5468/ad0f8f
Kazuhiko Seki
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Abstract

We study a fluctuation relation representing a non-equilibrium equality indicating that the ratio between the distribution of trajectories obtained by exchanging the initial and final positions is characterized by free energy differences for the duration of the trajectories. We examine the fluctuation relation for noninteracting charge carriers driven by an external electric field by using a continuous-time lattice random walk model with a general waiting-time distribution of transitions. The fluctuation relation is obtained regardless of the lattice structure factor or the form of the waiting-time distribution. However, the fluctuation relation is satisfied only after taking the continuum limit in the presence of a reflecting boundary. Moreover, in free space without boundary conditions, exchanging the initial and final positions is equivalent to exchanging the field (or drift) directions. However, we show that the exchanging field (or drift) directions is not relevant for studying the fluctuation relation under the reflecting boundary condition.
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外场驱动的连续时间随机游走的波动关系
我们研究了一种波动关系,它代表了一种非平衡相等关系,表明通过交换初始位置和最终位置获得的轨迹分布之间的比率是以轨迹持续时间的自由能差异为特征的。我们使用具有一般等待时间分布的连续时间晶格随机漫步模型,研究了由外部电场驱动的非相互作用电荷载流子的波动关系。无论晶格结构因子或等待时间分布的形式如何,都能得到波动关系。然而,只有在存在反射边界的情况下取连续极限后,才能满足波动关系。此外,在没有边界条件的自由空间中,交换初始位置和最终位置等同于交换场(或漂移)方向。然而,我们证明,交换场(或漂移)方向与研究反射边界条件下的波动关系无关。
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来源期刊
CiteScore
4.50
自引率
12.50%
发文量
210
审稿时长
1.0 months
期刊介绍: JSTAT is targeted to a broad community interested in different aspects of statistical physics, which are roughly defined by the fields represented in the conferences called ''Statistical Physics''. Submissions from experimentalists working on all the topics which have some ''connection to statistical physics are also strongly encouraged. The journal covers different topics which correspond to the following keyword sections. 1. Quantum statistical physics, condensed matter, integrable systems Scientific Directors: Eduardo Fradkin and Giuseppe Mussardo 2. Classical statistical mechanics, equilibrium and non-equilibrium Scientific Directors: David Mukamel, Matteo Marsili and Giuseppe Mussardo 3. Disordered systems, classical and quantum Scientific Directors: Eduardo Fradkin and Riccardo Zecchina 4. Interdisciplinary statistical mechanics Scientific Directors: Matteo Marsili and Riccardo Zecchina 5. Biological modelling and information Scientific Directors: Matteo Marsili, William Bialek and Riccardo Zecchina
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