Spectral density for a hole in an antiferromagnetic stripe phase
arXiv:cond-mat/0006022 · doi:10.1103/PhysRevB.62.4048
Abstract
Using variational trial wave function based on the string picture we study the motion of a single mobile hole in the stripe phase of the doped antiferromagnet. The holes within the stripes are taken to be static, the undoped antiferromagnetic domains in between the hole stripes are assumed to have alternating staggered magnetization, as is suggested by neutron scattering experiments. The system is described by the t-t'-t''-J model with realistic parameters and we compute the single particle spectral density.
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Cited by in corpus (10)
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- Microscopic origin of diagonal stripe phases in doped nickelates
- Stripe as an effective one-dimensional band of composite excitations
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- Holes as Dipoles in a Doped Antiferromagnet and Stripe Instabilities
- Stripe phases - possible ground state of the high-Tc superconductors
- Dynamical domain walls and spin-Peierls order in doped antiferromagnets: evidence from exact diagonalization of small clusters