paper

Electron interactions and charge ordering in LaSrCuO

arXiv:1008.5316 · doi:10.1140/epjst/e2010-01302-4

Abstract

We present results of inelastic light scattering experiments on single-crystalline LaSrCuO in the doping range and TlBaCuO at and . The main emphasis is placed on the response of electronic excitations in the antiferromagnetic phase, in the pseudogap range, in the superconducting state, and in the essentially normal metallic state at , where no superconductivity could be observed. In most of the cases we compare B and B spectra which project out electronic properties close to and , respectively. In the channel of electron-hole excitations we find universal behavior in B symmetry as long as the material exhibits superconductivity at low temperature. In contrast, there is a strong doping dependence in B symmetry: (i) In the doping range we observe rapid changes of shape and temperature dependence of the spectra. (ii) In LaSrCuO new structures appear for which are superposed on the electron-hole continuum. The temperature dependence as well as model calculations support an interpretation in terms of charge-ordering fluctuations. For the response from fluctuations disappears at B and appears at B symmetry in full agreement with the orientation change of stripes found by neutron scattering. While, with a grain of salt, the particle-hole continuum is universal for all cuprates the response from fluctuating charge order in the range is so far found only in LaSrCuO. We conclude that LaSrCuO is close to static charge order and, for this reason, may have a suppressed .

17 pages, 15 figures