articleTop 1% cited
Theory of discommensurations and the commensurate-incommensurate charge-density-wave phase transition
Physical review. B, Solid state · 1976 · Vol. 14(4) · pp. 1496–1502
W. L. McMillan✉(University of Illinois Urbana-Champaign)
Abstract
The lowest-energy state of the incommensurate charge density wave (CDW) near the lock-in transition is found to be a distorted plane wave. An exact solution is found in the weak-coupling limit and the lock-in phase transition is continuous. A new defect is found in the commensurate CDW, a discommensuration, in which the phase of the CDW slips by $\frac{2\ensuremath{\pi}}{3}$ relative to the perfectly locked in CDW. The lock-in phase transition is interpreted as a defect melting transition with a finite density of discommensurations in the incommensurate state.
Organic and Molecular Conductors ResearchSolid-state spectroscopy and crystallographyAdvanced Chemical Physics StudiesCondensed matter physicsPhysicsCharge density wavePhase transitionPhase (matter)Plane (geometry)Coupling (piping)Density wave theoryCharge (physics)Quantum mechanics
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