Finite-chain approach to the study ofCsNiCl3
Author:
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.45.5035/fulltext
Reference13 articles.
1. Thermodynamic functions of the S=(1/2 one-dimensional ferromagnet via the renormalization-group approach and Green’s function technique
2. Specific heat of quantum-spin chains: Application to (C6H11NH3)CuBr3and (C6H11NH3)CuCl3
3. Specific heat of (C6H11NH3)CuBr3and (C6H11NH3)CuCl3within series analysis of finite-chain data
4. Experiments on simple magnetic model systems
5. Experimental evidence for the Haldane gap in a spin-1 nearly isotropic, antiferromagnetic chain
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1. On the sequence of quantum (meta)magnetic transitions in Ising antiferromagnets with single-ion anisotropy;Low Temperature Physics;2005-07
2. Thermodynamic properties of a spin-1 antiferromagnetic chain with an anisotropy at a finite temperature;physica status solidi (b);2003-12
3. Numerical transfer-matrix simulations of S=1 molecular magnetic chains;The Journal of Chemical Physics;1998-08
4. Numerical Simulations of Linear S=1 Ferro- and Antiferromagnets;Acta Physica Polonica A;1997-08
5. Quantum transfer-matrix approach toS=1antiferromagnetic chains at finite temperatures;Physical Review B;1997-07-01
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