Finite-size effects in the spherical model of ferromagnetism: Zero-field susceptibility under antiperiodic boundary conditions
Author:
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.33.6415/fulltext
Reference9 articles.
1. Privman-Fisher hypothesis on finite systems: Verification in the case of the spherical model of ferromagnetism
2. Finite-size effects in the spherical model of ferromagnetism: Antiperiodic boundary conditions
3. Universal critical amplitudes in finite-size scaling
4. Phase transitions in finite systems: Influence of geometry on approach towards bulk critical behavior
5. Spin-spin correlations in finite systems: Scaling hypothesis and corrections to bulk behavior
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1. Quantum critical scaling and the Gross-Neveu model in 2+1 dimensions;EPL (Europhysics Letters);2011-08-01
2. Relationship between susceptibility and spin stiffness of mesoscopic quantum antiferromagnets;Physica A: Statistical Mechanics and its Applications;1997-05
3. Bloch-wall phase transition in the spherical model;Journal of Physics A: Mathematical and General;1996-05-21
4. Interface formation and a structural phase transition for the spherical model of ferromagnetism;Journal of Statistical Physics;1995-04
5. Spin-spin correlations in a finite-sized spherical model under twisted boundary conditions;Physical Review B;1994-09-01
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