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1 K.S. Cole and R.H. Cole. Dispersion and absorption in dielectrics. J.Chem.Phys., 9:341, 1941.
2 D.W. Davidson and R.H. Cole. Dielectric relaxation in glycerine. J.Chem.Phys., 18:1417, 1950.
3 D.W. Davidson and R.H. Cole. Dielectric relaxation in glycerol, propylene glycol and n-propanol. J.Chem.Phys., 19:1484, 1951.
4 R. Hilfer. An extension of the dynamical foundation for the statistical equilibrium concept. Physica A, 221:89, 1995.
5R. Hilfer. Foundations of fractional dynamics. Fractals, 3:549, 1995.
6 R. Hilfer. Fractional time evolution. In R. Hilfer, editor, Applications of Fractional Calculus in Physics, page 87, Singapore, 2000. World Scientific.
7 R. Hilfer. H-function representations for stretched exponential relaxation and non-Debye susceptibilities in glassy systems. Phys.Rev.E,  :in press, 2001.
8 S. Havriliak and S. Negami. A complex plane analysis of α-dispersions in some polymer systems. J. Polymer Science C, 14:99, 1966.
9 P. Lunkenheimer, U. Schneider, R. Brand, and A. Loidl. Glassy dynamics. Contemporary Physics, 41:15, 2000.
10 R. Richert and A. Blumen(eds.). Disorder Effects on Relaxational Processes. Springer, Berlin, 1994.
11 U. Schneider, R. Brand, P. Lunkenheimer, and A. Loidl. Excess wing in the dielectric loss of glass formers: A Johari-Goldstein β-relaxation process? Phys.Rev.Lett., 84:5560, 2000.
12 U. Schneider, P. Lunkenheimer, R. Brand, and A. Loidl. Broadband dielectric spectoscopy on glass-forming propylene carbonate. Phys.Rev. E, 59:6924, 1999.
13 G. Williams and D.C. Watts. Non-symmetrical dielectric relaxation behaviour arising from a simple empirical decay function. Trans.Faraday Soc., 66:80, 1970.