Evidence for Fermi surface reconstruction in the static stripe phase of LaEuSrCuO,
arXiv:0809.2237 · doi:10.1209/0295-5075/86/47005
Abstract
We present a photoemission study of LaEuSrCuO with doping level =1/8, where the charge carriers are expected to order forming static stripes. Though the local probes in direct space seem to be consistent with this idea, there has been little evidence found for such ordering in quasiparticle dispersions. We show that the Fermi surface topology of the 1/8 compound develops notable deviations from that observed for LaSrCuO in a way consistent with the FS reconstruction expected for the scattering on the antiphase stripe order.
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Cited by in corpus (9)
- Lattice symmetry breaking in cuprate superconductors: Stripes, nematics, and superconductivity
- Striped superconductors: How the cuprates intertwine spin, charge and superconducting orders
- Symmetry of spin excitation spectra in the tetragonal paramagnetic and superconducting phases of 122-ferropnictides
- Magnetic-field-enhanced incommensurate magnetic order in the underdoped high-temperature superconductor YBa(2)Cu(3)O(6.45)
- ARPES experiment in fermiology of quasi-2D metals (Review Article)
- Gutzwiller Magnetic Phase Diagram of the Cuprates
- Stripes in cuprate superconductors: Excitations and dynamic dichotomy
- Stripes and electronic quasiparticles in the pseudogap state of cuprate superconductors
- Pseudogap Suppression by Competition with Superconductivity in La-Based Cuprates