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Atypical behaviors of a tagged particle in asymmetric simple exclusion

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arxiv 2311.07800 v1 pith:SXRTHKKD submitted 2023-11-13 math.PR math-phmath.MP

classification math.PRmath-phmath.MP
keywords gammaparticleatypicallargetaggedasymmetricdensitydeviation
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abstract

Consider the asymmetric nearest-neighbor exclusion process (ASEP) on ${\mathbb Z}$ with single particle drift $\gamma>0$, starting from a Bernoulli product invariant measure $\nu_\rho$ with density $\rho$. It is known that the position $X_{N}$ of a tagged particle, say initially at the origin, at time $N$ satisfies an a.s. law of large numbers $\frac{1}{N}X_N \rightarrow \gamma(1-\rho)$ as $N\uparrow\infty$. In this context, we study the `typical' behavior of the tagged particle and `bulk' density evolution subject to `atypical' events $\{X_N\geq AN\}$ or $\{X_N\leq AN\}$ for $A\neq \gamma(1-\rho)$. We detail different structures, depending on whether $A<0$, $0\leq A< \gamma(1-\rho)$, $\gamma(1-\rho)<A< \gamma$, or $A\geq \gamma$, under which these atypical events are achieved, and compute associated large deviation costs. Among our results is an `upper tail' large deviation principle in scale $N$ for $\frac{1}{N}X_N$.

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  1. Moderate deviation principles for the current and the tagged particle in the WASEP

    math.PR 2025-06 conditional novelty 6.0 of 10

    For the 1D WASEP, the rescaled current and tagged particle satisfy sample path moderate deviation principles with speed a_n^2/n and explicit rate functions for β<1 and β>1.

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