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Resonant quantum coherence of magnetization at excited states in nanospin systems with different crystal symmetries

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posted on 2024-07-11, 17:10 authored by Jia-Lin Zhu, Rong Lu, Su-Peng Kou, Hui HuHui Hu, Bing-Lin Gu
The quantum interference effects induced by the Wess-Zumino term, or Berry phase are studied theoretically in resonant quantum coherence of the magnetization vector between degenerate states in nanometer-scale single-domain ferromagnets in the absence of an external magnetic field. We consider the magnetocrystalline anisotropy with trigonal, tetragonal and hexagonal crystal symmetry, respectively. By applying the periodic instanton method in the spin-coherent-state path integral, we evaluate the low-lying tunnel splittings between degenerate excited states of neighboring wells. And the low-lying energy level spectrum of mth excited state are obtained with the help of the Bloch theorem in one-dimensional periodic potential. The energy level spectrum and the thermodynamic properties of magnetic tunneling states are found to depend significantly on the total spins of ferromagnets at sufficiently low temperatures. Possible relevance to experiments is also discussed.

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ISSN

1434-6028

Journal title

European Physical Journal B: Condensed Matter and Complex Systems

Volume

16

Issue

3

Pagination

6 pp

Publisher

EDP Sciences and Springer

Copyright statement

Copyright © EDP Sciences, Societa Italiana di Fisica, Springer-Verlag 2000. The accepted manuscript is reproduced in accordance with the copyright policies of the joint publishers.

Language

eng

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