Monotonicity of the logarithmic energy for random matrices

Author:

Chafaï Djalil1ORCID,Dadoun Benjamin2ORCID,Youssef Pierre23ORCID

Affiliation:

1. DMA, École normale supérieure — PSL, 45 rue d’Ulm, F-75230 Cedex 5 Paris, France

2. Mathematics, Division of Science, New York University, Abu Dhabi, Abu Dhabi, UAE

3. Courant Institute of Mathematical Sciences, New York University, 251 Mercer St, New York, NY 10012, USA

Abstract

It is well known that the semi-circle law, which is the limiting distribution in the Wigner theorem, is the minimizer of the logarithmic energy penalized by the second moment. A very similar fact holds for the Girko and Marchenko–Pastur theorems. In this work, we shed the light on an intriguing phenomenon suggesting that this functional is monotonic along the mean empirical spectral distribution in terms of the matrix dimension. This is reminiscent of the monotonicity of the Boltzmann entropy along the Boltzmann equation, the monotonicity of the free energy along ergodic Markov processes, and the Shannon monotonicity of entropy or free entropy along the classical or free central limit theorem. While we only verify this monotonicity phenomenon for the Gaussian unitary ensemble, the complex Ginibre ensemble, and the square Laguerre unitary ensemble, numerical simulations suggest that it is actually more universal. We obtain along the way explicit formulas of the logarithmic energy of the models which can be of independent interest.

Funder

Département de Mathématiques et Applications of École normale supérieure – PSL

Publisher

World Scientific Pub Co Pte Ltd

Reference24 articles.

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4. Large deviations for Wigner's law and Voiculescu's non-commutative entropy

5. Edge scaling limits for a family of non-Hermitian random matrix ensembles

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