Realization of random-field Ising ferromagnetism in a molecular magnet
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- Type
- article
- Published
- 2009-10-09
- Cited by
- 15
- References
- 6
- Access
- Open access
- OpenAlex
- https://openalex.org/W1546972401
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:46266296
Keywords
Realization (probability), Ferromagnetism, Ising model, Condensed matter physics, Field (mathematics)
References
Cited by
- Reprint of “Using single-molecule magnets as analyte-recognition compounds in photo-electric chemical sensors: Recent results from [Mn12O12(O2CCH3)16(H2O)4]·2CH3COOH·4H2O, and [Mn12O12(O2CPh)16(H2O)4]”
- Novel disordering mechanism, self-organized criticality and universality in disordered systems
- Magnetization tunneling in high-symmetry Mn12 single-molecule magnets
- Quantum fluctuations and long-range order in molecular magnets
- Dipolar-controlled spin tunneling and relaxation in molecular magnets
- Tunneling and inversion symmetry in single-molecule magnets: The case of the Mn-12 wheel molecule
- Magnetic hysteresis and domain wall dynamics in single chain magnets with antiferromagnetic interchain coupling
- Reversible Disorder in a Room Temperature Ferromagnet
- Ordering and domains in tetragonal crystals of Ising spins coupled via dipolar interactions
- Disordered dipolar solids: Anisotropic growth laws and their slowing-down
- Collective dipolar relaxations in a molecular nanomagnet, Mn12-acetate
- Many-body localization from random magnetic anisotropy
- Magnetic Avalanches in Molecular Magnets
- Magnetic-field-tuned randomness in inhomogeneous altermagnets
- Reprint of “Using single-molecule magnets as analyte-recognition compounds in photo-electric chemical sensors: Recent results from [Mn12O12(O2CCH3)16(H2O)4]·2CH3COOH·4H2O, and [Mn12O12(O2CPh)16(H2O)4]”
- Spectroscopy Methods for Molecular Nanomagnets
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