首页> 外文期刊>The European physical journal, B. Condensed matter physics >Low-frequency spin dynamics in the orthorhombic phase of La_2CuO_4
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Low-frequency spin dynamics in the orthorhombic phase of La_2CuO_4

机译:La_2CuO_4斜方晶相的低频自旋动力学

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摘要

An effective field theory is derived that describes the low-frequency spin dynamics in the low-temperature orthorhombic phase of La_2CuO_4. Restricted to a single CuO_2 layer the effective theory is a simple generalization of the relativistic nonlinear σ model to include all spin interactions allowed by symmetry. Incorporating a weak interlayer interaction leads to two coupled nonlinear σ models which provide an efficient description of the complete bilayer dynamics. Particular attention is paid to the weak-ferromagnetic and spin-flop transitions induced by external magnetic fields. The main features of the observed (covert) weak ferromagnetism are thus accounted for in a straightforward manner but some of the finer theoretical predictions would require further experimental investigation. The derived framework is also suitable for the study of the structure and dynamics of magnetic domains in undoped La_2CuO_4.
机译:推导了一种有效的场论,它描述了La_2CuO_4低温正交晶相中的低频自旋动力学。限于单个CuO_2层,有效的理论是相对论非线性σ模型的简单概括,其中包括对称性允许的所有自旋相互作用。引入薄弱的层间相互作用会导致两个耦合的非线性σ模型,这些模型提供了完整双层动力学的有效描述。特别要注意由外部磁场引起的弱铁磁和自旋跃迁转变。因此,所观察到的(隐蔽的)弱铁磁性的主要特征可以用一种直接的方式来解释,但是一些更好的理论预测将需要进一步的实验研究。所推导的框架也适用于研究未掺杂的La_2CuO_4中的磁畴结构和动力学。

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