Charge rearrangement in magnetite: from magnetic field induced easy axis switching to femtoseconds electronic processes
Author:
Funder
Ministry of Science and Higher Education (MNiSW)
Publisher
Informa UK Limited
Subject
Condensed Matter Physics
Link
http://www.tandfonline.com/doi/pdf/10.1080/14786435.2015.1010625
Reference39 articles.
1. The causes of low-temperature demagnetization of remanence in multidomain magnetite
2. Heat capacity and entropy of nonstoichiometric magnetiteFe3(1−δ)O4: The thermodynamic nature of the Verwey transition
3. Effect of stoichiometry changes on electrical properties of magnetite
4. Verwey transition in magnetite at high pressure: A new quantum critical point at the onset of metallization
5. Verwey transition in magnetite at high pressure: A new quantum critical point at the onset of metallization
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1. Impact of hydrostatic pressure, nonstoichiometry, and doping on trimeron lattice excitations in magnetite during axis switching;Physical Review B;2023-12-20
2. Magnetic field induced structural changes in magnetite observed by resonant x-ray diffraction and Mössbauer spectroscopy;Physical Review B;2020-08-18
3. The influence of strain on the Verwey transition as a function of dopant concentration: towards a geobarometer for magnetite-bearing rocks;Geophysical Journal International;2019-06-12
4. Large magnetoresistance effects in Fe3O4;Journal of Physics: Condensed Matter;2019-03-26
5. ChemInform Abstract: Charge Rearrangement in Magnetite: from Magnetic Field Induced Easy Axis Switching to Femtoseconds Electronic Processes;ChemInform;2015-11
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