Competing orders in a bilayer Hubbard model
ORAL
Abstract
Hybridization between local orbitals and itinerant electrons is substantial in many strongly correlated materials. We study a model of itinerant electrons hybridized with a strongly interacted Hubbard layer by using numerically exact determinant quantum Monte Carlo (DQMC) simulations. In a specific range of interlayer hopping, we observe that the pairing vertex associated with PDW order becomes more attractive than that for uniform d-wave pairing when both layers are nearly half-filled. On the other hand, when the Hubbard layer is hole doped and the non-interacting layer is almost empty, we show that both layers develop antiferromagnetism, instead of spin stripes, in a similar range of interlayer hopping.
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Presenters
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Fangze Liu
Stanford University
Authors
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Fangze Liu
Stanford University
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Cheng Peng
SLAC, SLAC National Accelerator Laboratory
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Edwin W Huang
University of Illinois at Urbana-Champaign, University of Illinois at Urbana-Champai
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Chunjing Jia
University of Florida
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Brian Moritz
SLAC National Accelerator Laboratory, SLAC - Natl Accelerator Lab
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Thomas Devereaux
Stanford Univ, Stanford University