期刊论文详细信息
Symmetry Integrability and Geometry-Methods and Applications
A View on Optimal Transport from Noncommutative Geometry
article
Francesco D'Andrea1  Pierre Martinetti2 
[1] Ecole de Mathématique;Institut für Theoretische Physik
关键词: noncommutative geometry;    spectral triples;    transport theory;   
DOI  :  10.3842/SIGMA.2010.057
来源: National Academy of Science of Ukraine
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【 摘 要 】

We discuss the relation between the Wasserstein distance of order 1 between probability distributions on a metric space, arising in the study of Monge-Kantorovich transport problem, and the spectral distance of noncommutative geometry. Starting from a remark of Rieffel on compact manifolds, we first show that on any - i.e. non-necessary compact - complete Riemannian spin manifolds, the two distances coincide. Then, on convex manifolds in the sense of Nash embedding, we provide some natural upper and lower bounds to the distance between any two probability distributions. Specializing to the Euclidean space R n , we explicitly compute the distance for a particular class of distributions generalizing Gaussian wave packet. Finally we explore the analogy between the spectral and the Wasserstein distances in the noncommutative case, focusing on the standard model and the Moyal plane. In particular we point out that in the two-sheet space of the standard model, an optimal-transport interpretation of the metric requires a cost function that does not vanish on the diagonal. The latest is similar to the cost function occurring in the relativistic heat equation.

【 授权许可】

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