Recently, several experiments on La2−xSrxCuO4 (LSCO) challenged the Fermi liquid picture for overdoped cuprates, and stimulated intensive debates [1]. In this work, we study the magnetotransport phenomena in such systems based on the Fermi liquid assumption. The Hall coefficient RH and magnetoresistivity ρxx are investigated near the van Hove singularity xVHS≈0.2 across which the Fermi surface topology changes from hole- to electron-like. Our main findings are: (1) RH depends on the magnetic field B and drops from positive to negative values with increasing B in the doping regime xVHS<x≲0.3; (2) ρxx grows up as B2 at small B and saturates at large B, while in the transition regime a "nearly linear" behavior shows up. Our results can be further tested by future magnetotransport experiments in the overdoped LSCO.
@article{arxiv.2101.03741,
title = {Magnetotransport in overdoped La$_{2-x}$Sr$_x$CuO$_4$: a Fermi liquid approach},
author = {Rui-Ying Mao and Da Wang and Congjun Wu and Qiang-Hua Wang},
journal= {arXiv preprint arXiv:2101.03741},
year = {2021}
}