Nonequilibrium fluctuation-response relations for state-current correlations
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arXiv
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| Autores principales: | , , |
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| Formato: | Preprint |
| Publicado: |
2025
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| _version_ | 1866918347886559232 |
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| author | Ptaszynski, Krzysztof Aslyamov, Timur Esposito, Massimiliano |
| author_facet | Ptaszynski, Krzysztof Aslyamov, Timur Esposito, Massimiliano |
| contents | Recently, novel exact identities known as Fluctuation-Response Relations (FRRs) have been derived for nonequilibrium steady states of Markov jump processes. These identities link the fluctuations of state or current observables to a combination of responses of these observables to perturbations of transition rates. Here, we complement these results by deriving analogous FRRs applicable to mixed covariances of one state and one current observable. We further derive novel Inverse FRRs expressing individual state or current response in terms of a combination of covariances rather than vice versa. Using these relations, we demonstrate that the breaking of the Onsager symmetry requires the presence of state-current correlations. On the practical side, we demonstrate the applicability of FRRs for explaining the behavior of fluctuations in quantum dot devices or enzymatic reaction networks. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2506_08877 |
| institution | arXiv |
| publishDate | 2025 |
| record_format | arxiv |
| spellingShingle | Nonequilibrium fluctuation-response relations for state-current correlations Ptaszynski, Krzysztof Aslyamov, Timur Esposito, Massimiliano Statistical Mechanics Recently, novel exact identities known as Fluctuation-Response Relations (FRRs) have been derived for nonequilibrium steady states of Markov jump processes. These identities link the fluctuations of state or current observables to a combination of responses of these observables to perturbations of transition rates. Here, we complement these results by deriving analogous FRRs applicable to mixed covariances of one state and one current observable. We further derive novel Inverse FRRs expressing individual state or current response in terms of a combination of covariances rather than vice versa. Using these relations, we demonstrate that the breaking of the Onsager symmetry requires the presence of state-current correlations. On the practical side, we demonstrate the applicability of FRRs for explaining the behavior of fluctuations in quantum dot devices or enzymatic reaction networks. |
| title | Nonequilibrium fluctuation-response relations for state-current correlations |
| topic | Statistical Mechanics |
| url | https://arxiv.org/abs/2506.08877 |