Jean-Dominique Deuschel, Martin Slowik, Weile Weng (2024). Quenched Invariance Principle for Random Walks in Random Environments Admitting a Cycle Decomposition. DOI: 10.48550/arXiv.2411.06861
Benjamin Fehrman, Martin Slowik, Weile Weng (2026+). Quenched Functional CLT for Random Walks in Degenerate Divergence-Free Random Environments.
Jean-Dominique Deuschel, Martin Slowik, Weile Weng (2026+). Quenched Local Limit Theorem for Random Walks in Random Environments Admitting a Bounded Cycle Representation.
Alejandro Ramírez, Leonardo T. Rolla, Christophe Sabot, Weile Weng (2026+). Large Deviations near the Origin of Random Walk in Random Environment.
Wei Huang, Weile Weng. Towards Euclidean Quantum Field Theory. Oberwolfach Reports, 2351: 5-8 (2023). DOI: 10.4171/OWR/2023/2351
Weile Weng (joint with Jean-Dominique Deuschel and Martin Slowik): Quenched Functional CLT for Random Walks in Bounded Cyclic and Divergence-Free Random Environments.. Oberwolfach Reports, 10: 22-25 (2023). DOI: 10.14760/OWR/2023/10
Jean-Dominique Deuschel and Weile Weng. Quenched Invariance Principle. Oberwolfach Reports, 48: 18-21 (2022).DOI: 10.4171/OWR/2022/48
Contributed 10-talk video (Link) to German Probability and Statistics Days Mannheim (GPSD Mannheim 2021).