Giant Nernst effect in the incommensurate charge density wave state of P4W12O44
arXiv:1612.04045 · doi:10.1103/PhysRevB.94.241118
Abstract
We report the study of Nernst effect in quasi-low dimensional tungsten bronze P4W12O44 showing a sequence of Peierls instabilities. We demonstrate that both condensation of the electronic carriers in the CDW state and the existence of high-mobility electrons and holes originating from the small pockets remaining in the incompletely nested Fermi surface give rise to a Nernst effect of a magnitude similar to that observed in heavy fermion compounds.
Accepted to PRB
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Cited by in corpus (3)
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- Crossover from charge density wave stabilized antiferromagnetism to superconductivity in NdLaNiC compounds
- Weak localization competes with the quantum oscillations in a natural electronic superlattice: the case of Na(PO)(WO)