论文标题

镁的有效田间理论:手性磁铁和雪松机制的动力学

Effective field theory of magnon: Dynamics in chiral magnets and Schwinger mechanism

论文作者

Hongo, Masaru, Fujimori, Toshiaki, Misumi, Tatsuhiro, Nitta, Muneto, Sakai, Norisuke

论文摘要

在存在对称性效应的情况下,我们开发了自旋系统的有效场理论描述:磁场,单离子各向异性和dzyaloshinskii-moriya相互作用。从旋转系统的晶格描述开始,我们表明,与上述效果相对应的对称性术语可以纳入有效的场理论中,作为背景(或虚假)$ \ so(3)$ so(3)$量规场和对称张量表示中的标量字段的组合,最终以其物理值固定。我们使用有效的野外理论来研究不均匀地面状态的模式光谱,重点是一维有均衡状态,例如螺旋和螺旋状态。尽管螺旋和螺旋基态具有支持与翻译对称性破坏相关的无间隙Nambu-Goldstone模式的共同特征,但它们具有质量不同的分散关系:在螺旋相位的各向异性相关,而在螺旋阶段则具有各向异性。我们还讨论了由不均匀的磁场引起的镁产量,并找到类似于施温格公式的公式。我们的磁蛋白生产公式给出了抗铁磁铁的有限速度,而铁磁体的消失速率为消失的速率,而对于两种情况之间的铁磁体插值。

We develop the effective field theoretical descriptions of spin systems in the presence of symmetry-breaking effects: the magnetic field, single-ion anisotropy, and Dzyaloshinskii-Moriya interaction. Starting from the lattice description of spin systems, we show that the symmetry-breaking terms corresponding to the above effects can be incorporated into the effective field theory as a combination of a background (or spurious) $\SO(3)$ gauge field and a scalar field in the symmetric tensor representation, which are eventually fixed at their physical values. We use the effective field theory to investigate mode spectra of inhomogeneous ground states, with focusing on one-dimensionally inhomogeneous states, such as helical and spiral states. Although the helical and spiral ground states share a common feature of supporting the gapless Nambu-Goldstone modes associated with the translational symmetry breaking, they have qualitatively different dispersion relations: isotropic in the helical phase while anisotropic in the spiral phase. We also discuss the magnon production induced by an inhomogeneous magnetic field, and find a formula akin to the Schwinger formula. Our formula for the magnon production gives a finite rate for antiferromagnets, and a vanishing rate for ferromagnets, whereas that for ferrimagnets interpolates between the two cases.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源