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- W3103509092 endingPage "093057" @default.
- W3103509092 startingPage "093057" @default.
- W3103509092 abstract "Recent experimental discoveries have brought a diverse set of broken symmetry states to the center stage of research on cuprate superconductors. Here, we focus on a thematic understanding of the diverse phenomenology by exploring a strong-coupling mechanism of symmetry breaking driven by frustration of antiferromagnetic (AFM) order. We achieve this through a variational study of a three-band model of the CuO2 plane with Kondo type exchange couplings between doped oxygen holes and classical copper spins. Two main findings from this strong-coupling multi-band perspective are (1) that the symmetry hierarchy of spin stripe, charge stripe, intra-unit-cell nematic order and isotropic phases are all accessible microscopically within the model, (2) many symmetry-breaking patterns compete with energy differences within a few meV per Cu atom to produce a rich phase diagram. These results indicate that the diverse phenomenology of broken-symmetry states in hole-doped AFM charge-transfer insulators may indeed arise from hole-doped frustration of antiferromagnetism." @default.
- W3103509092 created "2020-11-23" @default.
- W3103509092 creator A5027798299 @default.
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- W3103509092 creator A5071692047 @default.
- W3103509092 creator A5079104389 @default.
- W3103509092 creator A5089520426 @default.
- W3103509092 date "2014-09-30" @default.
- W3103509092 modified "2023-10-06" @default.
- W3103509092 title "Nematic and spin-charge orders driven by hole-doping a charge-transfer insulator" @default.
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- W3103509092 doi "https://doi.org/10.1088/1367-2630/16/9/093057" @default.
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