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Quantum Breathers in Anisotropy Ferromagnetic Chains with Second-Order Coupling

机译:具有二阶耦合的各向异性铁磁链中的量子呼吸

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摘要

Under considering the next-nearest-neighbor interaction, quantum breathers in one-dimensional anisotropy ferromagnetic chains are theortically studied. By introducing the Dyson-Maleev transformation for spin operators, a map to a Heisenberg ferromagnetic spin lattice into an extended Bose-Hubbard model can be established. In the case of a small number of bosons, by means of the numerical diagonalization technique, the energy spectrum of the corresponding extended Bose-Hubbard model containing two bosons is calculated. When the strength of the single-ion anisotropy is enough large, a isolated single band appears. This isolated single band corresponds to two-boson bound state, which is the simplest quantum breather state. It is shown that the introduction of the next-nearest-neighbor interaction will lead to interesting band structures. In the case of a large number of bosons, by applying the time-dependent Hartree approximation, quantum breather states for the system is constructed. In this case, the effect of the next-nearest-neighbor interaction on quantum breathers is also analyzed.
机译:在考虑下一近邻相互作用的情况下,理论上研究了一维各向异性铁磁链中的量子呼吸。通过为自旋算子引入Dyson-Maleev变换,可以建立到Heisenberg铁磁自旋晶格到扩展的Bose-Hubbard模型的映射。在玻色子较少的情况下,借助数值对角化技术,计算了包含两个玻色子的相应扩展Bose-Hubbard模型的能谱。当单离子各向异性的强度足够大时,会出现孤立的单个谱带。这个孤立的单频带对应于两个玻色子的束缚态,这是最简单的量子呼吸态。结果表明,引入下一个最近邻相互作用将导致有趣的能带结构。在大量玻色子的情况下,通过应用与时间有关的Hartree近似,可以构造系统的量子呼吸态。在这种情况下,还分析了下一个最近邻居对量子呼吸器的影响。

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