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A Gaussian size distribution of independently relaxing domains is used to model the response of various glass-forming liquids. With a single temperature-dependent parameter, the model accurately characterizes the observed dielectric susceptibility of salol and glycerol P. K. Dixon et al. , Phys. Rev. Lett. 65, 1108 (1990) ; N. Menon et al. , J. Non-Cryst. Solids 141, 61 (1992) over more than 13 orders of magnitude in frequency. The quality and range of these data allow quantitative confirmation of all assumptions of the model. As a function of temperature, the model gives excellent agreement with observed asymptotic relaxation rates (w_) via ln (l/w_) -ln (1/w₀), where s is a temperature-dependent average domain size, and w₀ a constant intrinsic relaxation rate. Thus, the model provides a physical explanation for non-Arrhenius primary response, without resorting to the three adjustable parameters of the Vogel-Tammann-Fulcher law.
Ralph V. Chamberlin (Wed,) studied this question.