Orbital Mixing and Nesting in the Bilayer ManganitesLa2−2xSr1+2xMn2O7
Author:
Publisher
American Physical Society (APS)
Subject
General Physics and Astronomy
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevLett.101.236402/fulltext
Reference24 articles.
1. Layered Magnetic Manganites
2. Polaron coherence condensation as the mechanism for colossal magnetoresistance in layered manganites
3. Quasiparticles and anomalous temperature dependence of the low-lying states in the colossal magnetoresistant oxideLa2−2xSr1+2xMn2O7(x=0.36)from angle-resolved photoemission
4. Complexity in Strongly Correlated Electronic Systems
5. Electronic and magnetic properties of layered colossal magnetoresistive oxides:La1+2xSr2−2xMn2O7
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1. Effect of External Factors on Magnetism of Fluctuating Low-Dimensional Electron and Spin Correlations in Frustrated Manganites La1 – ySmyMnO3 + δ (y = 0.85, 1.0);Physics of the Solid State;2019-12
2. Evolution of the Magnetization Peak–Hill Features in La0.15Sm0.85MnO3+δ Near to Transition Temperature to the Superconducting State, TC ≈ 41 K, Caused by Increasing of an External Magnetic Field;Nanosistemi, Nanomateriali, Nanotehnologii;2019-03-30
3. Giant magnetoelastic spin-flop with magnetocrystalline instability in La1.4Sr1.6Mn2O7;Physical Review Materials;2018-01-16
4. Etching of Cr tips for scanning tunneling microscopy of cleavable oxides;Review of Scientific Instruments;2017-02
5. On the Origin of CE-Type Orbital Fluctuations in the Ferromagnetic Metallic Phase of La2−2xSr1+2xMn2O7 near x = 0.4;Journal of the Physical Society of Japan;2015-06-15
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