arXiv · 1305.1683
Electron pockets and pseudogap asymmetry observed in the thermopower of underdoped cuprates
Abstract
We calculate the diffusion thermoelectric power of high-Tc cuprates using the resonating-valence-bond spin-liquid model developed by Yang, Rice and Zhang (YRZ). In this model, reconstruction of the energy-momentum dispersion results in a pseudogap in the density of states that is heavily asymmetric about the Fermi level. The subsequent asymmetry in the spectral conductivity is found to account for the large magnitude and temperature dependence of the thermopower observed in underdoped cuprates. In addition we find evidence in experimental data for electron pockets in the Fermi surface, arising from a YRZ-like reconstruction, near the onset of the pseudogap in the slightly overdoped regime.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
J. G. Storey, J. L. Tallon, G. V. M. Williams. 2013-05-08. Electron pockets and pseudogap asymmetry observed in the thermopower of underdoped cuprates. https://doi.org/10.1209/0295-5075%2F102%2F37006
Cite the original work for its findings. Save a collection to share your selection of sources.