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Andres, Sebastian ; Chiarini, Alberto ; Deuschel, Jean-Dominique ; Slowik, Martin ORCID: 0000-0001-5373-5754 (2018) Quenched invariance principle for random walks with time-dependent ergodic degenerate weights. Open Access The Annals of Applied Probability Cleveland, OH ; Hayward, CA 46 1 302-336 [Article]
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Andres, Sebastian ; Deuschel, Jean-Dominique ; Slowik, Martin ORCID: 0000-0001-5373-5754 (2019) Heat kernel estimates and intrinsic metric for random walks with general speed measure under degenerate conductances. Open Access Electronic Communications in Probability : ECP Seattle, WA 24 Paper 5 1-17 [Article]
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Deuschel, Jean-Dominique ; Friz, Peter K. ; Maurelli, Mario ; Slowik, Martin ORCID: 0000-0001-5373-5754 (2018) The enhanced Sanov theorem and propagation of chaos. Open Access Stochastic Processes and Their Applications Amsterdam [u.a.] 128 7 2228-2269 [Article]
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Andres, Sebastian ; Deuschel, Jean-Dominique ; Slowik, Martin ORCID: 0000-0001-5373-5754 (2015) Invariance principle for the random conductance model in a degenerate ergodic environment. Open Access The Annals of Probability New York, NY [u.a.] 43 4 1866-1891 [Article]
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Andres, Sebastian ; Deuschel, Jean-Dominique ; Slowik, Martin ORCID: 0000-0001-5373-5754 (2016) Heat kernel estimates for random walks with degenerate weights. Open Access Electronic Journal of Probability : EJP Seattle, WA 21 33 1-21 [Article]
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Andres, Sebastian ; Deuschel, Jean-Dominique ; Slowik, Martin ORCID: 0000-0001-5373-5754 (2020) Green kernel asymptotics for two-dimensional random walks under random conductances. Open Access Electronic Communications in Probability : ECP Seattle, WA 25 Paper 58 1-14 [Article]
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Andres, Sebastian ; Chiarini, Alberto ; Slowik, Martin ORCID: 0000-0001-5373-5754 (2021) Quenched local limit theorem for random walks among time-dependent ergodic degenerate weights. Open Access Probability Theory and Related Fields Berlin [u.a.] 179 3/4 1145-1181 [Article]
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Blath, Jochen ; Hermann, Felix ; Slowik, Martin ORCID: 0000-0001-5373-5754 (2021) A branching process model for dormancy and seed banks in randomly fluctuating environments. Open Access Journal of Mathematical Biology Berlin ; Heidelberg 83 2, Article 17 1-40 [Article]
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