Open Access
2021 Overlaps of a spherical spin glass model with microscopic external field
Elizabeth Collins-Woodfin
Author Affiliations +
Electron. J. Probab. 26: 1-22 (2021). DOI: 10.1214/21-EJP722

Abstract

We examine the behavior of the 2-spin spherical Sherrington-Kirkpatrick model with an external field by analyzing the overlap of a spin with the external field. Previous research has noted that, at low temperature, this overlap exhibits dramatically different behavior in the presence of an external field as compared to the model with no external field. The transition between those two settings was examined in a recent physics paper by Baik, Collins-Woodfin, Le Doussal, and Wu as well as a recent math paper by Landon and Sosoe. Both papers focus on the setting in which the external field strength, h, approaches zero as the dimension, N, approaches infinity. In particular, the paper of Baik et al studies the overlap with a microscopic external field (hN12) but without a rigorous proof. This paper aims to give a proof of that result. The proof involves representing the generating function of the overlap as a ratio of contour integrals and then analyzing the asymptotics of those contour integrals using results from random matrix theory.

Funding Statement

Supported in part by NSF grants DMS-1701577 and DMS-1954790.

Acknowledgments

The author would like to thank Jinho Baik for all his helpful advice during the preparation of this paper. The author would also like to thank Benjamin Landon for answering questions about his paper and Jeffrey Lagarias for providing support through his NSF grant.

Citation

Download Citation

Elizabeth Collins-Woodfin. "Overlaps of a spherical spin glass model with microscopic external field." Electron. J. Probab. 26 1 - 22, 2021. https://doi.org/10.1214/21-EJP722

Information

Received: 29 January 2021; Accepted: 3 November 2021; Published: 2021
First available in Project Euclid: 3 December 2021

Digital Object Identifier: 10.1214/21-EJP722

Subjects:
Primary: 60
Secondary: 15 , 82

Keywords: Sherrington-Kirkpatrick , Spin glass

Vol.26 • 2021
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