Numerical Studies of Quantum Oscillations in the Superconducting vortex mixed state
arXiv:0812.3351 · doi:10.1103/PhysRevB.79.180510
Abstract
We studied the quantum oscillations in superconducting vortex mixed states with d-wave pairing. We showed that the Onsager relation does not always apply. Furthermore, at mean field level the quantum oscillations from electron pockets are suppressed by the pairing. We conclude that an interpretation of the experimental results asccoming from the four hole pockets created by a folding cannot be ruled out.
5 pages, 6 figures
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Cited by in corpus (8)
- Pair density wave, charge density wave and vortex in high Tc cuprates
- Reconsidering the interpretation of quantum oscillation experiments on underdoped YBa(2)Cu(3)O(6+x)
- Loop current order and d-wave superconductivity: some observable consequences
- The Mixed State of a -Striped Superconductor
- Quasiparticle Nernst effect in the cuprate superconductors from the d-density wave theory of the pseudogap phase
- Quantum oscillations from a pair-density wave
- Onsager rule, quantum oscillation frequencies, and the density of states in the mixed-vortex state of cuprates
- Quantum-limit Hall effect with large carrier density in topological semimetals