Honeycomb Heisenberg spin ladder: Unusual ground state and thermodynamic properties
Abstract
The unusual ground state and thermodynamic properties of spin-(1/2) two-leg honeycomb (HC) spin ladder are systematically studied by jointly utilizing various analytical and numerical methods. The HC spin ladder is found to exhibit behaviors dramatically different from those of the conventional square spin ladder. A strong relevant term \vec{n}\cdot\vec{J} and a half saturation magnetization plateau that can be attributed to the formation of diluted dimer states are observed in the HC ladder, both of which are absent in the square ladder. The ground state phase diagram of the HC spin ladder is identified, and the thermodynamic properties of the specific heat and susceptibility for different couplings are thoroughly explored, where two kinds of excitations are unveiled. Our calculated result is well fitted to the experimental data of the two-leg HC spin ladder compound [Cu2L1(N3)4]n.
- Publication:
-
EPL (Europhysics Letters)
- Pub Date:
- December 2013
- DOI:
- 10.1209/0295-5075/104/57009
- arXiv:
- arXiv:1307.5945
- Bibcode:
- 2013EL....10457009Z
- Keywords:
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- Condensed Matter - Strongly Correlated Electrons
- E-Print:
- 5 pages, 6 figures