Spin and Current Correlation Functions in the \bf d-density Wave State of the Cuprates
arXiv:cond-mat/0101027 · doi:10.1103/PhysRevB.64.224516
Abstract
We calculate the spin-spin and current-current correlation functions in states exhibiting d_{{x^2}-{y^2}}-density wave (DDW) order, d_{{x^2}-{y^2}} superconducting order (DSC), or both types of order. The spin-spin correlation functions in a state with both DDW and DSC order and in a state with DDW order alone, respectively, illuminate the resonant peak seen in the superconducting state of the underdoped cuprates and the corresponding feature seen in the pseudogap regime. The current-current correlation function in a state with both DDW and DSC order evinces a superfluid density with doping dependence which is consistent with that of the underdoped cuprates. These calculations strengthen the identification of the pseudogap with DDW order and of the underdoped cuprates with a state with both DDW and DSC order.
9 pages, 4 figures
References in corpus (5)
- Antiferromagnetic ordering in superconducting
- Observation of Magnetic Moments in the Superconducting State of YBaCuO
- Neutron Scattering Signature of d-density Wave Order in the Cuprates
- Phase diagram of YBaCuO at TT based on Cu(2) transverse nuclear relaxation
- Temperature Dependence of the Cu(2) NQR Line Width in YBaCuO
Cited by in corpus (31)
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- Superfluid density in the underdoped YBa_2Cu_3O_{7-x}: Evidence for d-density wave order of pseudogap
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