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Current Fluctuations of the One Dimensional Symmetric Simple Exclusion Process with Step Initial Condition

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arxiv 0902.2364 v1 pith:3D2P25BQ submitted 2009-02-13 cond-mat.stat-mech

classification cond-mat.stat-mech
keywords exclusionaxisconditioncurrentdensityfluctuationsinfiniteinitial
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abstract

For the symmetric simple exclusion process on an infinite line, we calculate exactly the fluctuations of the integrated current $Q_t$ during time $t$ through the origin when, in the initial condition, the sites are occupied with density $\rho_a$ on the negative axis and with density $\rho_b$ on the positive axis. All the cumulants of $Q_t$ grow like $\sqrt{t}$. In the range where $Q_t \sim \sqrt{t}$, the decay $\exp [-Q_t^3/t]$ of the distribution of $Q_t$ is non-Gaussian. Our results are obtained using the Bethe ansatz and several identities recently derived by Tracy and Widom for exclusion processes on the infinite line.

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  1. Anomalous current fluctuations in the stochastic XNOR hopping model

    cond-mat.stat-mech 2026-08 conditional novelty 5.0 of 10

    The XNOR spin current has Gaussian, half-normal, and M-Wright limits on t^(1/4) or t^(1/8) scales with explicitly derived amplitudes, supported by parameter-free simulations.

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