标题
Coherent Quasiparticles with a Small Fermi Surface in Lightly DopedSr3Ir2O7
作者
关键词
-
出版物
PHYSICAL REVIEW LETTERS
Volume 113, Issue 25, Pages -
出版商
American Physical Society (APS)
发表日期
2014-12-17
DOI
10.1103/physrevlett.113.256402
参考文献
相关参考文献
注意:仅列出部分参考文献,下载原文获取全部文献信息。- Phonon-assisted optical excitation in the narrow bandgap Mott insulatorSr3Ir2O7
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- Fermi arcs in a doped pseudospin-1/2 Heisenberg antiferromagnet
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- Carrier localization and electronic phase separation in a doped spin-orbit-driven Mott phase in Sr3(Ir1–xRu x )2O7
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- Imaging the evolution of metallic states in a correlated iridate
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- Spectroscopic indications of polaronic behavior of the strong spin-orbit insulator Sr3Ir2O7
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- Dimensionality-controlled Mott transition and correlation effects in single-layer and bilayer perovskite iridates
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- Tuning theJeff=12insulating state via electron doping and pressure in the double-layered iridate Sr3Ir2O7
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- EffectiveJ=1/2Insulating State in Ruddlesden-Popper Iridates: AnLDA+DMFTStudy
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- Monte Carlo Study of an Unconventional Superconducting Phase in Iridium OxideJeff=1/2Mott Insulators Induced by Carrier Doping
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- On the magnetic structure of Sr3Ir2O7: an x-ray resonant scattering study
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- The ${J}_{\mathrm{eff}}=\frac{1}{2}$ insulator Sr3Ir2O7studied by means of angle-resolved photoemission spectroscopy
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- Reduced Effective Spin-Orbital Degeneracy and Spin-Orbital Ordering in Paramagnetic Transition-Metal Oxides:Sr2IrO4versusSr2RhO4
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- Twisted Hubbard Model forSr2IrO4: Magnetism and Possible High Temperature Superconductivity
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- Time-reversal symmetry breaking and spontaneous Hall effect without magnetic dipole order
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- Quantum Spin Hall Effect in a Transition Metal OxideNa2IrO3
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- Mott Insulators in the Strong Spin-Orbit Coupling Limit: From Heisenberg to a Quantum Compass and Kitaev Models
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- Phase-Sensitive Observation of a Spin-Orbital Mott State in Sr2IrO4
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- Dimensionality-Controlled Insulator-Metal Transition and Correlated Metallic State in5dTransition Metal OxidesSrn+1IrnO3n+1(n=1, 2, and∞)
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- NovelJeff=1/2Mott State Induced by Relativistic Spin-Orbit Coupling inSr2IrO4
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