Elastic modulus, thermal expansion, and specific heat at a phase transition
- 1 November 1975
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 12 (9) , 3849-3854
- https://doi.org/10.1103/physrevb.12.3849
Abstract
The interrelation of the elastic modulus, thermal-expansion coefficient, and specific heat of a transformed phase relative to the untransformed phase is calculated assuming a particular but useful form of the thermodynamic potential. For second-order phase transitions where this potential applies, measurements of modulus, expansion, and specific heat can yield the general (longitudinal as well as shear) first- and second-order stress (or strain) dependences of the transition temperature and of the order parameter at absolute zero. An exemplary application to one type of phase transition is given.Keywords
This publication has 8 references indexed in Scilit:
- Thermodynamics of Pressure Effects inV3Si andV3GePhysical Review B, 1971
- Unusual Strain Dependence ofand Related Effects for High-Temperature (-Structure) Superconductors: Sound Velocity at the Superconducting Phase TransitionPhysical Review B, 1971
- Thermodynamics of Type-I and Type-II SuperconductorsJournal of Applied Physics, 1969
- Thermodynamics of the Isentropic Sound Velocity Near the Superfluid Transition inHe4Physical Review B, 1969
- Thermodynamic Relations between Anomalous Quantities near a Lambda Transition in Anisotropic DielectricsThe Journal of Chemical Physics, 1966
- Generalized Pippard EquationsThe Journal of Chemical Physics, 1964
- Chapter III The Nature of the λ-Transition in Liquid HeliumPublished by Elsevier ,1961
- XLVIII. Thermodynamic relations applicable near a lambda-transitionPhilosophical Magazine, 1956