Identical temperature dependence of the time scales of several linear-response functions of two glass-forming liquids
arXiv:1106.0227 · doi:10.1063/1.3690083
Abstract
The frequency-dependent dielectric constant, shear and adiabatic bulk moduli, longitudinal thermal expansion coefficient, and longitudinal specific heat have been measured for two van der Waals glass-forming liquids, tetramethyl-tetraphenyl-trisiloxane (DC704) and 5-polyphenyl-4-ether. Within the experimental uncertainties the loss-peak frequencies of the measured response functions have identical temperature dependence over a range of temperatures, for which the Maxwell relaxation time varies more than nine orders of magnitude. The time scales are ordered from fastest to slowest as follows: Shear modulus, adiabatic bulk modulus, dielectric constant, longitudinal thermal expansion coefficient, longitudinal specific heat. The ordering is discussed in light of the recent conjecture that van der Waals liquids are strongly correlating, i.e., approximate single-parameter liquids.
8 pages, 6 figures, Substantially revised version
References in corpus (12)
- Pressure-energy correlations in liquids. I. Results from computer simulations
- Strong pressure-energy correlations in van der Waals liquids
- Pressure-energy correlations in liquids. II. Analysis and consequences
- A repulsive reference potential reproducing the dynamics of a liquid with attractions
- Physical aging studied by a device allowing for rapid thermal equilibration
- Corresponding States of Structural Glass Formers. II
- Identical temperature dependence of the time scales of several linear-response functions of two glass-forming liquids
- Single-order-parameter description of glass-forming liquids: A one-frequency test
- Glass-forming liquids: One or more "order" parameters?
- Measuring the dynamic thermal expansivity of molecular liquids near the glass transition
- Beta relaxation in the shear mechanics of equilibrium viscous liquids: Phenomenology and network modeling of the alpha-beta merging region
- Solution of the spherically symmetric linear thermoviscoelastic problem in the inertia-free limit
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