论文标题

kagome金属AV $ _3 $ SB $ _5 $(a = CS,RB,K)中的充电密度波订单

Charge density wave order in kagome metal AV$_3$Sb$_5$ (A= Cs, Rb, K)

论文作者

Wu, Shangfei, Ortiz, Brenden R., Tan, Hengxin, Wilson, Stephen D., Yan, Binghai, Birol, Turan, Blumberg, Girsh

论文摘要

我们采用极化分辨的电子拉曼光谱和密度函数理论来研究kagome金属AV3SB5的电荷密度波(CDW)状态的主要和次级参数及其相互作用。 15K处的先前X射线衍射数据表明,CSV3SB5中的CDW顺序包括2x2x4结构:一层david逆时星二维和三个连续的戴戴维星模式的层。我们分析了基于15K处的2x2x4结构的晶格扭曲,发现U晶格失真是主要阶参数,而M和L失真是钒位移的次级阶参数。通过计算裸露的易感性证实了这一结论,该易感性显示沿着六边形布里渊区的面部中心线(U-Li​​ne)在QZ = 0.25左右的宽峰。我们还确定了在CDW状态中出现的几种声子,它们是与V和SB原子以及碱原子相关的晶格振动模式。这些模式的频率,HWHM和集成强度的详细温度演变支持CSV3SB5中有两个连续的结构相变的相图:第一个具有主要阶参数参数为ts = 94K,第二个Isoscrounter的相位图出现在70k左右。

We employ polarization-resolved electronic Raman spectroscopy and density functional theory to study the primary and secondary order parameters, as well as their interplay, in the charge density wave (CDW) state of the kagome metal AV3Sb5. Previous x-ray diffraction data at 15K established that the CDW order in CsV3Sb5 comprises of a 2x2x4 structure: one layer of inverse-star-of-David and three consecutive layers of star-of-David pattern. We analyze the lattice distortions based the 2x2x4 structure at 15K, and find that U lattice distortion is the primary order parameter while M and L distortions are secondary order parameters for Vanadium displacements. This conclusion is confirmed by the calculation of bare susceptibility that shows a broad peak at around qz=0.25 along the hexagonal Brillouin zone face central line (U-line). We also identify several phonon modes emerging in the CDW state, which are lattice vibration modes related to V and Sb atoms as well as alkali atoms. The detailed temperature evolution of these modes' frequencies, HWHM, and integrated intensities support a phase diagram with two successive structural phase transitions in CsV3Sb5: the first one with a primary order parameter appearing at TS=94K and the second isostructural one appearing at around 70K.

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