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- W560724499 abstract "We discuss the problem of static chaos in spin glasses. In the case of magnetic-field perturbations, we propose a scaling theory for the spin-glass phase. Using the mean-field approach we argue that some pure states are suppressed by the magnetic field and their free-energy cost is determined by the finite-temperature fixed-point exponents. In this framework, numerical results suggest that mean-field chaos exponents are probably exact in finite dimensions. If we use the droplet approach, numerical results suggest that the zero-temperature fixed-point exponent ensuremath{theta} is very close to (d-3)/2. In both approaches d=3 is the lower critical dimension in agreement with recent numerical simulations." @default.
- W560724499 created "2016-06-24" @default.
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- W560724499 date "1994-09-01" @default.
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- W560724499 title "Static chaos and scaling behavior in the spin-glass phase" @default.
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- W560724499 doi "https://doi.org/10.1103/physrevb.50.6844" @default.
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