Miao H, Zhang T T, Li H X, Fabbris G, Said A H, Tartaglia R, Yilmaz T, Vescovo E, Yin J-X, Murakami S, Feng X L, Jiang K, Wu X L, Wang A F, Okamoto S, Wang Y L, Lee H N
Materials Science and Technology Division, Oak Ridge National Laboratory, Oak Ridge, TN, USA.
Department of Physics, Tokyo Institute of Technology, Okayama, Meguro-ku, Tokyo, Japan.
Nat Commun. 2023 Oct 4;14(1):6183. doi: 10.1038/s41467-023-41957-5.
The intertwining between spin, charge, and lattice degrees of freedom can give rise to unusual macroscopic quantum states, including high-temperature superconductivity and quantum anomalous Hall effects. Recently, a charge density wave (CDW) has been observed in the kagome antiferromagnet FeGe, indicative of possible intertwining physics. An outstanding question is that whether magnetic correlation is fundamental for the spontaneous spatial symmetry breaking orders. Here, utilizing elastic and high-resolution inelastic x-ray scattering, we observe a c-axis superlattice vector that coexists with the 2[Formula: see text]2[Formula: see text]1 CDW vectors in the kagome plane. Most interestingly, between the magnetic and CDW transition temperatures, the phonon dynamical structure factor shows a giant phonon-energy hardening and a substantial phonon linewidth broadening near the c-axis wavevectors, both signaling the spin-phonon coupling. By first principles and model calculations, we show that both the static spin polarization and dynamic spin excitations intertwine with the phonon to drive the spatial symmetry breaking in FeGe.
自旋、电荷和晶格自由度之间的相互交织能够产生非同寻常的宏观量子态,包括高温超导和量子反常霍尔效应。最近,在 Kagome 反铁磁体 FeGe 中观测到了电荷密度波(CDW),这表明可能存在相互交织的物理现象。一个悬而未决的问题是,磁关联对于自发空间对称破缺序是否至关重要。在此,利用弹性和高分辨率非弹性 X 射线散射,我们观测到一个 c 轴超晶格矢量,它与 Kagome 平面中的 2×2×1 CDW 矢量共存。最有趣的是,在磁转变温度和 CDW 转变温度之间,声子动力学结构因子在 c 轴波矢附近显示出巨大的声子能量硬化和显著的声子线宽展宽,这两者都表明了自旋 - 声子耦合。通过第一性原理和模型计算,我们表明静态自旋极化和动态自旋激发都与声子相互交织,从而驱动 FeGe 中的空间对称破缺。