Fermi Surface Reconstruction by Dynamic Magnetic Fluctuations
arXiv:1201.5700 · doi:10.1103/PhysRevLett.109.037001
Abstract
We demonstrate that nearly critical quantum magnetic fluctuations in strongly correlated electron systems can change the Fermi surface topology and also lead to spin charge separation (SCS) in two dimensions. To demonstrate these effects we consider a small number of holes injected into the bilayer antiferromagnet. The system has a quantum critical point (QCP) which separates magnetically ordered and disordered phases. We demonstrate that in the physically interesting regime there is a magnetically driven Lifshitz point (LP) inside the magnetically disordered phase. At the LP the topology of the hole Fermi surface is changed. We also demonstrate that in this regime the hole spin and charge necessarily separate when approaching the QCP. The considered model sheds light on generic problems concerning the physics of the cuprates.
updated version, accepted to PRL
References in corpus (13)
- Quantum oscillations and the Fermi surface in an underdoped high-Tc superconductor
- Electronic liquid crystal state in the high-temperature superconductor YBCO(6.45)
- Intense paramagnon excitations in a large family of high-temperature superconductors
- A Phenomenological Theory of The Pseudogap State
- Neutron scattering study of the magnetic phase diagram of underdoped YBa(2)Cu(3)O(6+x)
- On the Reconstructed Fermi Surface in the Underdoped Cuprates
- Magnetic quantum oscillations in YBaCuO and YBaCuO in fields of up to 85 T; patching the hole in the roof of the superconducting dome
- Spin dynamics near the critical doping in weakly-superconducting underdoped YBa2Cu3O6.35 (Tc=18K)
- Kramers degeneracy in a magnetic field and Zeeman spin-orbit coupling in antiferromagnetic conductors
- Kramers degeneracy in a magnetic field and Zeeman spin-orbit coupling in antiferromagnets
- Doping dependence of the shadow band in La-based cuprates studied by angle-resolved photoemission spectroscopy
- Effective action, magnetic excitations and quantum fluctuations in lightly doped single layer cuprates
- Single hole dynamics in the Kondo Necklace and Bilayer Heisenberg models on a square lattice
Cited by in corpus (8)
- Hidden order and beyond: an experimental-theoretical overview of the multifaceted behavior of URuSi
- Orbital control of effective dimensionality: from spin-orbital fractionalization to confinement in the anisotropic ladder system CaCu2O3
- Fermi Surface Reconstruction by Dynamic Magnetic Fluctuations and Spin-Charge Separation Near an O(3) Quantum Critical Point
- Wave function and spatial structure of polarons in an antiferromagnetic bilayer
- Bond particle theory for the pseudogap phase of underdoped cuprates
- Carrier dynamics in doped bilayer iridates near magnetic quantum criticality
- Electrical Conductivity in Quantum Materials
- Casimir effect mechanism of pairing between fermions in the vicinity of a magnetic quantum critical point