PERCOLATIVE ASPECTS OF VISCOUS-FLOW NEAR THE GLASS-TRANSITION

被引:8
作者
HUNT, A
机构
来源
INTERNATIONAL JOURNAL OF MODERN PHYSICS B | 1994年 / 8卷 / 07期
关键词
D O I
10.1142/S0217979294000397
中图分类号
O59 [应用物理学];
学科分类号
摘要
Jumps in e.g.''equilibrium'' specific heats, DELTAC at the glass ''transition, T(g) kinetic. The upward curvature of log viscosity, eta, vs 1/T supposedly indicates a phase transition at T0 < T(g) because the functional form fitting data over the largest temperature range diverges at (an inaccessible) T0. But the strongest curvature of eta is near T(c), often 50K above T(g); it marks a cross-over from diffusive (T > T(c)) (treated in effective-medium theories) to percolative transport (T < T(c)). The pressure, (P), dependence of T(g), correlations of T(g) with T0 and the melting temperature, T(m), (mixed) applicability of Ehrenfest theorems to dT(g)/dP, decoupling of mechanical and dielectric relaxation at T(c) (measured by R(d), the ratio of mechanical and dielectric relaxation times), correlation of non-exponentiality in dielectric relaxation with R(d), dependence of T(g) on system size, relative rates for shear and bulk moduli, and shapes of dielectric and specific heat relaxations can be described. Possibly the correlation of the Kauzmann temperature, T(K), with T0 is also explicable using percolation. T(K) marks coincidence of extrapolated ''configurational'' entropies of super-cooled liquids with corresponding crystals. The physical basis for these results in a relevance of short-range inhomogeneities (which ''average out'' over large distances) removes a need to consider an underlying phase transition.
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页码:855 / 864
页数:10
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