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- W2023211124 abstract "We consider the dynamics of supercooled fluids subject to a continuous quenching procedure, with cooling rate r = dT(t)/dt. The analysis is carried out analytically in the framework of a mean field schematic model recently introduced. 1 We show the existence of a glass temperature T g (r) below which the system falls out of equilibrium. T g (r) approaches logarithmically in r the ideal glass temperature T 0 = lim r→0 T g (r), where the relaxation time diverges á la Vogel-Fulcher, similarly to some experimental observations. Well above T g (r) a simple fluid behavior is observed. As T g is approached from above a characteristic wave vector k d divides an high momenta equilibrated region, where a fluid-like behavior is obeyed, from the non thermalized modes with k < k d , for which time translational invariance lacks. Below T g the system is found in a globally off-equilibrium glassy state characterized by a logarithmic decay of the density fluctuations and aging. The two time correlator decays as an enhanced power law." @default.
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- W2023211124 date "2003-02-01" @default.
- W2023211124 modified "2023-09-23" @default.
- W2023211124 title "LACK OF EQUILIBRATION IN A MODEL FOR CONTINUOUSLY SUPERCOOLED LIQUIDS" @default.
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- W2023211124 doi "https://doi.org/10.1142/s0218348x0300177x" @default.
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