The Replica Fourier Transform is the generalization of the discrete Fourier Transform to quantities defined on an ultrametric tree. It finds use in conjunction of the replica method used to study thermodynamics properties of disordered systems such as spin glasses. Its definition is presented in a systematic and simple form and its use illustrated with some representative examples. In particular we give a detailed discussion of the diagonalization in the Replica Fourier Space of the Hessian matrix of the Gaussian fluctuations about the mean field saddle point of spin glass theory. The general results are finally discussed for a generic spherical spin glass model, where the Hessian can be computed analytically.

Replica Fourier Transform: Properties and applications / Crisanti, Andrea; C., De Dominicis. - In: NUCLEAR PHYSICS. B. - ISSN 0550-3213. - STAMPA. - 891:(2015), pp. 73-105. [10.1016/j.nuclphysb.2014.12.002]

Replica Fourier Transform: Properties and applications

CRISANTI, Andrea
;
2015

Abstract

The Replica Fourier Transform is the generalization of the discrete Fourier Transform to quantities defined on an ultrametric tree. It finds use in conjunction of the replica method used to study thermodynamics properties of disordered systems such as spin glasses. Its definition is presented in a systematic and simple form and its use illustrated with some representative examples. In particular we give a detailed discussion of the diagonalization in the Replica Fourier Space of the Hessian matrix of the Gaussian fluctuations about the mean field saddle point of spin glass theory. The general results are finally discussed for a generic spherical spin glass model, where the Hessian can be computed analytically.
2015
Spin-glass and other random models, Glass transitions, Disordered structures; amorphous and glassy solids
01 Pubblicazione su rivista::01a Articolo in rivista
Replica Fourier Transform: Properties and applications / Crisanti, Andrea; C., De Dominicis. - In: NUCLEAR PHYSICS. B. - ISSN 0550-3213. - STAMPA. - 891:(2015), pp. 73-105. [10.1016/j.nuclphysb.2014.12.002]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/656453
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