We recently introduced a robust approach to the derivation of sharp asymptotic formula for correlation functions of statistical mechanics models in the high-temperature regime. We describe its application to the nonperturbative proof of Ornstein-Zernike asymptotics of 2-point functions for self-avoiding walks, Bernoulli percolation and ferromagnetic Ising models. We then extend the proof, in the Ising case, to arbitrary odd-odd correlation functions of connection paths (invariance principle), and relate the variance of the limiting process to the geometry of the equidecay profiles. Finally, we explain the relation between these results from Statistical Mechanics and their counterparts in Quantum Field Theory.

Random Path Representation and Sharp Correlations Asymptotics at High-Temperatures / M. Campanino; D. Ioffe; Y. Velenik. - STAMPA. - (2004), pp. 29-52.

Random Path Representation and Sharp Correlations Asymptotics at High-Temperatures

CAMPANINO, MASSIMO;
2004

Abstract

We recently introduced a robust approach to the derivation of sharp asymptotic formula for correlation functions of statistical mechanics models in the high-temperature regime. We describe its application to the nonperturbative proof of Ornstein-Zernike asymptotics of 2-point functions for self-avoiding walks, Bernoulli percolation and ferromagnetic Ising models. We then extend the proof, in the Ising case, to arbitrary odd-odd correlation functions of connection paths (invariance principle), and relate the variance of the limiting process to the geometry of the equidecay profiles. Finally, we explain the relation between these results from Statistical Mechanics and their counterparts in Quantum Field Theory.
2004
Stochastic Analysis on Large Scale Interacting Systems
29
52
Random Path Representation and Sharp Correlations Asymptotics at High-Temperatures / M. Campanino; D. Ioffe; Y. Velenik. - STAMPA. - (2004), pp. 29-52.
M. Campanino; D. Ioffe; Y. Velenik
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/27463
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