Complexity in Strongly Correlated Electronic Systems
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Summary
The spontaneous emergence of electronic nanometer-scale structures in transition metal oxides, and the existence of many competing states, are properties often associated with complex matter where nonlinearities dominate, such as soft materials and biological systems.
- Type
- article
- Published
- 2005-07-08
- Cited by
- 1,760
- References
- 84
- Access
- Open access
- OpenAlex
- https://openalex.org/W2164194853
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:14854839
Keywords
Colossal magnetoresistance, Spintronics, Condensed matter physics, Superconductivity, Electronic structure
References
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- Phase separation and low-field bulk magnetic properties of Pr 0.7 Ca 0.3 MnO 3
- Percolative phase separation underlies colossal magnetoresistance in mixed-valent manganites
- Magnetic phase separation in La1-xSrxCoO3 by 59Co nuclear magnetic resonance.
- Metamagnetic Transition in the Quasi-Two-Dimensional Mott Transition System Ca2−xSrxRuO4
- Superconductivity and quantum criticality in CeCoIn5.
- Nanoscopic coexistence of magnetism and superconductivity in YBa2Cu3O6+x detected by muon spin rotation.
- Stripe glasses: self-generated randomness in a uniformly frustrated system
- Evidence for stripe correlations of spins and holes in copper oxide superconductors
- Importance of phase fluctuations in superconductors with small superfluid density
- Engineered Interface of Magnetic Oxides
- Elasticity-driven nanoscale electronic structure in superconductors.
- Electric field effect in correlated oxide systems
- Magnetic and electronic phase diagram and superconductivity in the organic superconductors κ − ( ET ) 2 X
- Imaging the granular structure of high-Tc superconductivity in underdoped Bi2Sr2CaCu2O8+δ
Cited by
- Effect of B-site doping in (La0.3Pr0.7)0.65Ca0.35Mn1−xBxO3 (B=Fe, Cr, Ru and Al)manganites
- Apparent violation of the Wiedemann-Franz law near a magnetic field tuned metal-antiferromagnetic quantum critical point.
- Spin and orbital Ti magnetism at LaMnO3/SrTiO3 interfaces.
- Fingerprints of intrinsic phase separation: magnetically doped two-dimensional electron gas.
- Evidence of kinetically arrested supercooled phases in the perovskite oxide NdNiO3
- Gate-tunable phase transitions in thin flakes of 1T-TaS2.
- Low-temperature crystallization of solution-derived metal oxide thin films assisted by chemical processes.
- 11. Correlated electrons in complex transition metal oxides
- Origin of the asymmetric orbital--lattice interactions in correlated oxide heterostructures
- Magnetoresistance and Ferromagnetism in Disordered LaCu0.5Mn0.5O3 Perovskite
- Numerical Study of the Transition Metal Oxides and the Transport Properties of Iron Pnictides
- Studies of Oxygen Deficient Complex Cobaltates with Perovskite Related Structures
- A Key for Photoinduced Insulator-Metal Transitions in Manganites : Lattice Constant Matching between Charge/Orbital Ordered Insulator and Ferromagnetic Metal(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- Growth and Electric Field Control of Phase Separated Manganites
- Toward Growth Control of (111)-oriented Perovskite Thin Films: La0.7Sr0.3MnO3/SrTiO3(111) a model study
- Investigation of structural, magnetic and electric transport properties of half-doped chromium manganites La0.3R0.2Sr0.5Mn0.5Cr0.5O3 (R=La, Nd, Sm, and Gd)
- Construction and operation of a milli-Kelvin spectroscopic imaging STM for the study of correlated electron materials
- Entre métal et isolant : dynamique ultrarapide dans l'isolant topologique Bi2Te3 et domaines microscopiques à la transition De Mott Dans V203
- A metallic mosaic phase and the origin of Mott-insulating state in 1T-TaS2
- Stationary Josephson current as a tool to detect charge density waves in high-T c oxides
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