Detection of spin-flip ESR transitions and Arrhenius behavior for theAsO44−center in theKH2AsO4-type ferroelectric compounds at high temperatures
Author:
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.39.7009/fulltext
Reference36 articles.
1. Environmental Effect on Atomic Hydrogen Hyperfine Structure in Acids
2. Effect of Environmental Nuclei in Electron Spin Resonance Spectroscopy
3. Electron spin resonance of an X-ray irradiated single crystal of potassium dihydrogen arsenate, KH2AsO4
4. EPR and ENDOR Studies of Slow Dynamics and the Central Peak Phenomenon near Phase Transitions
5. Proton order-disorder in KH2PO4-type ferroelectrics: Slater theory and ising model in a transverse tunneling field
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1. Anharmonic and Quantum Effects in KDP-Type Ferroelectrics: Modified Strong Dipole–Proton Coupling Model;Structure and Bonding;2006
2. Isotopic effect detected by a paramagnetic probe in the KH2PO4-type ferroelectric;Solid State Communications;1998-11
3. ESR Study of Electron–Nuclear Dipolar Relaxation for AsO44−Spin Probe in the Paraelectric Phase of KH2AsO4;Journal of Magnetic Resonance;1997-05
4. Electron spin-lattice relaxation of AsO44− and SeO43− centers in KH2PO4 type crystals: Crystal field versus hyperfine effects;Journal of Physics and Chemistry of Solids;1996-10
5. Sensitivity of the Method of Double-Modulation ESR Detection of Electron Spin-Lattice Relaxation Time;Journal of Magnetic Resonance, Series A;1994-02
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