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Towards equilibrium ground state in charge-density-wave systems
42
Citations
16
References
1991
Year
Materials ScienceQuantum DynamicEnergy RelaxationCharge ExcitationsNonequilibrium StateEngineeringPhysicsDislocation InteractionCritical PhenomenonRelaxation ProcessApplied PhysicsCondensed Matter PhysicsQuantum MaterialsCharge-density-wave SystemsDisordered Quantum SystemEquilibrium StateCharge TransportSolid-state Physic
We present a study of energy relaxation in two representative charge-density-wave compounds: ${\mathrm{TaS}}_{3}$ and ${\mathrm{NbSe}}_{3}$ below T=0.5 K. The evolution of the relaxation indicates a crossover between a nonequilibrium state and the thermodynamical equilibrium state when the system has been allowed to age. In the equilibrium state the relaxation is thermally activated with an activation energy of \ensuremath{\sim}1 K. We interpret these results as long-time dynamics in the network of charge-density-wave dislocations with a critical temperature close to 0 K.
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