Influence of quenched impurities on first-order phase transitions
- 1 April 1979
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 19 (7), 3580-3585
- https://doi.org/10.1103/physrevb.19.3580
Abstract
Microscopic random quenched impurities may or may not produce rounding of a first-order phase transition. We derive a criterion for the appearance of rounding due to local fluctuations in thermodynamic phase. Such fluctuations occur when the free-energy lowering due to taking advantage of local fluctuations in impurity density more than offsets the free-energy cost of the interface produced. The argument also predicts the spatial scale of such phase fluctuations, when they occur. In some situations this scale is just the coherence length ; in others, the inhomogeneity develops over "domains," which may be much larger than . Near a second-order transition our criterion reduces to the one due to Harris. We specifically discuss what happens when a first-order transition becomes second order as an external parameter is varied.
Keywords
This publication has 11 references indexed in Scilit:
- Dynamics of the charge-density wave. I. Impurity pinning in a single chainPhysical Review B, 1978
- Lowering of Dimensionality in Phase Transitions with Random FieldsPhysical Review Letters, 1976
- Ferromagnetic Phase Transitions in Random Fields: The Breakdown of Scaling LawsPhysical Review Letters, 1976
- Application of the renormalization group to phase transitions in disordered systemsPhysical Review B, 1976
- Random-Field Instability of the Ordered State of Continuous SymmetryPhysical Review Letters, 1975
- Critical properties of random-spin models from theexpansionPhysical Review B, 1975
- Charge-density waves and superlattices in the metallic layered transition metal dichalcogenidesAdvances in Physics, 1975
- Renormalization-Group Approach to the Critical Behavior of Random-Spin ModelsPhysical Review Letters, 1974
- Effect of random defects on the critical behaviour of Ising modelsJournal of Physics C: Solid State Physics, 1974
- Ising Model for theTransition and Phase Separation in-MixturesPhysical Review A, 1971