Magnetization plateau of the S=2 antiferromagnetic Heisenberg chain with anisotropies
ORAL
Abstract
The magnetization process of the S=2 antiferromagnetic quantum spin chain with the exchange and single-ion anisotropies is investigated, using thenumerical exact diagonalization of finite-size clusters and the level spectroscopy analysis[1]. It is found that a magnetization plateau possibly appears at a half of the saturation magnetization for some suitable anisotropy parameters. The level spectroscopy analysis indicates that the 1/2 magnetization plateau is formed by two different mechanisms, depending on the anisotropy parameters. The phase diagram of the 1/2 plateau states and some typical magnetization curves are also presented. In addition the biquadratic interaction is revealed to enhance the plateau induced by the Haldane mechanism.
[1] T. Sakai, K. Okamoto and T. Tonegawa, Phys. Rev. B 100 (2019) 054407.
[1] T. Sakai, K. Okamoto and T. Tonegawa, Phys. Rev. B 100 (2019) 054407.
*This work was partly supported by JSPS KAKENHI, Grant Numbers JP16K05419, JP20K03866, JP16H01080 (J-Physics), JP18H04330 (J-Physics) and JP20H05274.
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Presenters
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Toru Sakai
- Univ of Hyogo