论文标题

反铁磁拓扑绝缘子MNBI $ _2 $ te $ _4 $电影中的可调动力磁电效应

Tunable dynamical magnetoelectric effect in antiferromagnetic topological insulator MnBi$_2$Te$_4$ films

论文作者

Zhu, Tongshuai, Wang, Huaiqiang, Zhang, Haijun, Xing, Dingyu

论文摘要

四十多年前,Axion被认为是粒子物理学中质量低的基本粒子,以求解强$ \ Mathcal {cp} $(电荷偶然和平等)拼图。轴也被认为是宇宙暗物质的可能组成部分。但是,尚未确认自然界中轴的存在。有趣的是,斧头是作为伪内库场而产生的,这些伪层是从Chern-simons理论中衍生的凝结物理物理学。在抗铁磁绝缘子中,轴突场可以通过自旋波激发引起动力学,并表现出丰富的外来现象,例如手性磁效应,轴支高极性。但是,由于缺乏真实材料,对动态轴支球场的研究很少。最近,MNBI $ _2 $ te $ _4 $被发现是一种反铁磁性拓扑绝缘子,具有量化的轴突场,受到反转对称$ \ MATHCAL {P MATHCAL {p} $的保护和磁性 - 晶体对称对称性$ \ MATHCAL $ \ MATHCAL {S} $。在这里,我们研究了Mnbi $ _2 $ te $ _4 $电影,其中$ \ nathcal {p} $和$ \ nathcal {s} $ symmetries都会自发地破坏,并发现动态轴支球场和可调节的动态磁效应都可以在很大程度上可以调节,从而使$ te $ te $ __ $ __ $ _2 $ y $ _2 $ ri。元素替代。我们的结果为研究反铁磁性拓扑绝缘子MNBI $ _2 $ te $ _4 $和相关材料的轴心动态开辟了广泛的途径,并且希望促进对暗物质的研究。

More than forty years ago, axion was postulated as an elementary particle with a low mass and weak interaction in particle physics to solve the strong $\mathcal{CP}$ (charge conjugation and parity) puzzle. Axions are also considered as a possible component of dark matter of the universe. However, the existence of axions in nature has not been confirmed. Interestingly, axions arise as pseudoscalar fields derived from the Chern-Simons theory in condensed matter physics. In antiferromagnetic insulators, the axion field can become dynamical induced by spin-wave excitations and exhibits rich exotic phenomena, such as, the chiral magnetic effect, axionic polariton and so on. However, the study of the dynamical axion field is rare due to the lack of real materials. Recently, MnBi$_2$Te$_4$ was discovered to be an antiferromagnetic topological insulator with a quantized axion field protected by the inversion symmetry $\mathcal{P}$ and the magnetic-crystalline symmetry $\mathcal{S}$. Here, we studied MnBi$_2$Te$_4$ films in which both the $\mathcal{P}$ and $\mathcal{S}$ symmetries are spontaneously broken and found that the dynamical axion field and largely tunable dynamical magnetoelectric effects can be realized through tuning the thickness of MnBi$_2$Te$_4$ films, the temperature and the element substitution. Our results open a broad avenue to study axion dynamics in antiferromagnetic topological insulator MnBi$_2$Te$_4$ and related materials, and also is hopeful to promote the research of dark matter.

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