We compute the leading asymptotics for the maximum of the (centered) logarithm of the absolute value of the characteristic polynomial, denoted Ψ N, of the Ginibre ensemble as the dimension of the random matrix N tends to ∞. The method relies on the log-correlated structure of the field Ψ N and we obtain the lower-bound for the maximum by constructing a family of Gaussian multiplicative chaos measures associated with certain regularization of Ψ N at small mesoscopic scales. We also obtain the leading asymptotics for the dimensions of the sets of thick points and verify that they are consistent with the predictions coming from the Gaussian Free Field. A key technical input is the approach from Ameur et al. (Ann Probab 43(3):1157–1201, 2015) to derive the necessary asymptotics, as well as the results from Webb and Wong (Proc Lond Math Soc (3) 118(5):1017–1056, 2019).

Maximum of the Characteristic Polynomial of the Ginibre Ensemble / Lambert, G.. - In: COMMUNICATIONS IN MATHEMATICAL PHYSICS. - ISSN 0010-3616. - 378:2(2020), pp. 943-985. [10.1007/s00220-020-03813-1]

Maximum of the Characteristic Polynomial of the Ginibre Ensemble

Lambert G.
2020-01-01

Abstract

We compute the leading asymptotics for the maximum of the (centered) logarithm of the absolute value of the characteristic polynomial, denoted Ψ N, of the Ginibre ensemble as the dimension of the random matrix N tends to ∞. The method relies on the log-correlated structure of the field Ψ N and we obtain the lower-bound for the maximum by constructing a family of Gaussian multiplicative chaos measures associated with certain regularization of Ψ N at small mesoscopic scales. We also obtain the leading asymptotics for the dimensions of the sets of thick points and verify that they are consistent with the predictions coming from the Gaussian Free Field. A key technical input is the approach from Ameur et al. (Ann Probab 43(3):1157–1201, 2015) to derive the necessary asymptotics, as well as the results from Webb and Wong (Proc Lond Math Soc (3) 118(5):1017–1056, 2019).
2020
378
2
943
985
https://arxiv.org/abs/1902.01983
Lambert, G.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11767/152232
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