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- W2092619119 abstract "In the context of a classical example of glass formation in three dimensions, we exemplify how to construct a statistical-mechanical theory of the glass transition. At the heart of the approach is a simple criterion for verifying a proper choice of upscaled quasispecies that allow the construction of a theory with a finite number of ``states.'' Once constructed, the theory identifies a typical scale $ensuremath{xi}$ that increases rapidly with lowering the temperature and which determines the $ensuremath{alpha}$-relaxation time ${ensuremath{tau}}_{ensuremath{alpha}}$ as ${ensuremath{tau}}_{ensuremath{alpha}}ensuremath{sim}mathrm{exp}(ensuremath{mu}ensuremath{xi}/T)$, with $ensuremath{mu}$ a typical chemical potential. The theory can predict relaxation times at temperatures that are inaccessible to numerical simulations." @default.
- W2092619119 created "2016-06-24" @default.
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- W2092619119 date "2009-03-23" @default.
- W2092619119 modified "2023-10-15" @default.
- W2092619119 title "Statistical Mechanics and Dynamics of a Three-Dimensional Glass-Forming System" @default.
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- W2092619119 doi "https://doi.org/10.1103/physrevlett.102.125701" @default.
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