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Log-Concave Polynomials III: Mason's Ultra-Log-Concavity Conjecture for Independent Sets of Matroids.

, , , and . CoRR, (2018)

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Log-Concave Polynomials II: High-Dimensional Walks and an FPRAS for Counting Bases of a Matroid., , , and . CoRR, (2018)Spectral Independence in High-Dimensional Expanders and Applications to the Hardcore Model., , and . FOCS, page 1319-1330. IEEE, (2020)Rapid Mixing of Glauber Dynamics up to Uniqueness via Contraction., , and . FOCS, page 1307-1318. IEEE, (2020)Strong Spatial Mixing for Colorings on Trees and its Algorithmic Applications., , , and . FOCS, page 810-845. IEEE, (2023)Log-concave polynomials IV: approximate exchange, tight mixing times, and near-optimal sampling of forests., , , , and . STOC, page 408-420. ACM, (2021)Log-Concave Polynomials III: Mason's Ultra-Log-Concavity Conjecture for Independent Sets of Matroids., , , and . CoRR, (2018)Optimal Mixing of Glauber Dynamics: Entropy Factorization via High-Dimensional Expansion., , and . CoRR, (2020)Pipeline Parallelism for DNN Inference with Practical Performance Guarantees., , , and . CoRR, (2023)Rapid Mixing of Glauber Dynamics up to Uniqueness via Contraction., , and . SIAM J. Comput., 52 (1): 196-237 (February 2023)Log-Concave Polynomials IV: Exchange Properties, Tight Mixing Times, and Faster Sampling of Spanning Trees., , , and . CoRR, (2020)