Fermi surface reconstruction by a charge-density-wave with finite correlation length
Abstract
Even a small amplitude charge-density-wave (CDW) can reconstruct a Fermi surface, giving rise to new quantum oscillation frequencies. Here, we investigate quantum oscillations when the CDW has a finite correlation length -- a case relevant to the hole-doped cuprates. By considering the Berry phase induced by a spatially varying CDW phase, we derive an effective Dingle factor that depends exponentially on the ratio of the cyclotron orbit radius, , to . In the context of YBCO, we conclude that the values of reported to date for bidirectional CDW order are, prima facie, too short to account for the observed Fermi surface reconstruction; on the other hand, the values of for the unidirectional CDW are just long enough.
Keywords
Cite
@article{arxiv.1905.03261,
title = {Fermi surface reconstruction by a charge-density-wave with finite correlation length},
author = {Yuval Gannot and Brad J. Ramshaw and Steven A. Kivelson},
journal= {arXiv preprint arXiv:1905.03261},
year = {2019}
}
Comments
13 pages, 8 figures; typos fixed, references added