论文标题
拓扑狄拉克半学LAAGSB $ _ {2} $带电荷密度波排序的晶格动力学
Lattice dynamics of topological Dirac semimetal LaAgSb$_{2}$ with charge density wave ordering
论文作者
论文摘要
LAAGSB $ _ {2} $是一种罕见的材料,它提供了调查电荷密度波(CDW)排序和拓扑保护电子带结构之间复杂相互作用的机会。由于这两种现象均由结构对称性支配,因此对晶格动力学的全面研究非常需要。在本报告中,我们介绍了单晶LAAGSB $ _ {2} $中温度和压力依赖性拉曼光谱和X射线衍射的结果。我们的结果证实,拉曼光谱是探测CDW排序现象的高度敏感工具,尤其是LAAGSB $ _ {2} $的低温第二CDW转变,在大多数实验中,它看起来是非常弱的异常。与晶体方向相关的测量结果提供了与晶体学对称性的拉曼模式的演变,并且可以通过组对称分析进一步研究。低温X射线衍射数据显示了与CDW不稳定性相对应的结构调制的出现。联合高压拉曼光谱和同步加速器X射线衍射通过降低晶体对称性揭示了多个结构相变,这也有望导致电子拓扑跃迁。
LaAgSb$_{2}$ is a rare material, which offers the opportunity to investigate the complex interplay between charge density wave (CDW) ordering and topology protected electronic band structure. As both of these phenomena are governed by the structural symmetries, a comprehensive study of the lattice dynamics is highly desirable. In this report, we present the results of temperature and pressure dependent Raman spectroscopy and x-ray diffraction in single crystalline LaAgSb$_{2}$. Our results confirm that Raman spectroscopy is a highly sensitive tool to probe CDW ordering phenomenon, particularly the low-temperature second CDW transition in LaAgSb$_{2}$, which appears as a very weak anomaly in most experiments. The crystal orientation-dependent measurements provide the evolution of Raman modes with crystallographic symmetries and can be further studied through group symmetry analysis. The low-temperature x-ray diffraction data show the emergence of structural modulations corresponding to the CDW instability. The combined high-pressure Raman spectroscopy and synchrotron x-ray diffraction reveal multiple structural phase transitions through lowering of crystalline symmetries, which are also expected to lead to electronic topological transitions.