346
LE VERRE
[23] SIPP, A., Relaxation structurale dans les silicates, Rapport DEA, Université Paris 6 (1993).
[24] SOULES T.F., Molecular dynamic calculations of glass structure and
diffusion in glass, J. Non-Cryst. Solids 49, 29–52 (1982).
[25] ANGELL C.A., Structural instability and relaxation in liquid and glass
phases, J. Non-Cryst. Solids 102, 205 (1988).
[26] SCHERER G.W., Use of the Adam-Gibbs equation in the analysis of
structural relaxation, J. Am. Ceram. Soc. 67 (7), 504–11 (1984).
[27] NAPOLITANO A., SIMMONS J.H., BLACKBURN D.H., CHIDESTER R.E.,
Analysis of low temperature viscosity data for three NBS standard
glasses, J. Res. Nat. Bur. St., Sect. A 78 (3), 323–29 (1974).
[28] MAZURIN O.V., STAR TSEV Yu.K., POTSELUEVA L.N., Temperature dependence of the voscosity of some glasses at a constant structural
temperature, Sov. J. Glass Phys. Chem. 5 (1), 68–79 (1979).
[29] SILLESCU H., Heterogeneity at the glass transition : a review, J. NonCryst. Solids 243, 81–108 (1999).
[30] MOYNIHAN C.T., SCHROEDER J., Non-exponential structural relaxation, anomalous light scattering and nanoscale inhomogeneities in
glass-forming liquids, J. Non-Cryst. Solids 160, 52–59 (1993).
[31] DONTH E., The size of cooperatively rearranging regions at the glass
transition, J. Non-Cryst. Solids 53, 325–330 (1982).
[32] FISCHER E.W., DONTH E., STEFFEN W., Temperature dependence
of characteristic length for glass transition, Phys. Rev. Lett. 68 (15),
2344–2346 (1992).
[33] GUPTA P.K., INNIS D., KURKJIAN C.R., ZHONG Q., Nanoscale roughness of oxide glass surfaces, J. Non-Cryst. Solids 262, 200–206
(2000).
LE VERRE
[23] SIPP, A., Relaxation structurale dans les silicates, Rapport DEA, Université Paris 6 (1993).
[24] SOULES T.F., Molecular dynamic calculations of glass structure and
diffusion in glass, J. Non-Cryst. Solids 49, 29–52 (1982).
[25] ANGELL C.A., Structural instability and relaxation in liquid and glass
phases, J. Non-Cryst. Solids 102, 205 (1988).
[26] SCHERER G.W., Use of the Adam-Gibbs equation in the analysis of
structural relaxation, J. Am. Ceram. Soc. 67 (7), 504–11 (1984).
[27] NAPOLITANO A., SIMMONS J.H., BLACKBURN D.H., CHIDESTER R.E.,
Analysis of low temperature viscosity data for three NBS standard
glasses, J. Res. Nat. Bur. St., Sect. A 78 (3), 323–29 (1974).
[28] MAZURIN O.V., STAR TSEV Yu.K., POTSELUEVA L.N., Temperature dependence of the voscosity of some glasses at a constant structural
temperature, Sov. J. Glass Phys. Chem. 5 (1), 68–79 (1979).
[29] SILLESCU H., Heterogeneity at the glass transition : a review, J. NonCryst. Solids 243, 81–108 (1999).
[30] MOYNIHAN C.T., SCHROEDER J., Non-exponential structural relaxation, anomalous light scattering and nanoscale inhomogeneities in
glass-forming liquids, J. Non-Cryst. Solids 160, 52–59 (1993).
[31] DONTH E., The size of cooperatively rearranging regions at the glass
transition, J. Non-Cryst. Solids 53, 325–330 (1982).
[32] FISCHER E.W., DONTH E., STEFFEN W., Temperature dependence
of characteristic length for glass transition, Phys. Rev. Lett. 68 (15),
2344–2346 (1992).
[33] GUPTA P.K., INNIS D., KURKJIAN C.R., ZHONG Q., Nanoscale roughness of oxide glass surfaces, J. Non-Cryst. Solids 262, 200–206
(2000).
