论文标题
kagome Metal RBV $ _3 $ sb $ _5 $的电荷密度波状态下的异常大厅效应和二维费米表面
Anomalous Hall effect and two-dimensional Fermi surfaces in the charge-density-wave state of kagome metal RbV$_3$Sb$_5$
论文作者
论文摘要
AV $ _3 $ SB $ _5 $(A = CS,K,RB)最近被发现的超导系统($ T _ {\ rm C} \ SIM0.9-2.5 $ K),其中钒原子采用Kagome结构。有趣的是,这些系统进入了电荷密度波(CDW)相($ t _ {\ rm cdw} \ sim80-100 $ k),进一步的证据表明,时间反转对称性在CDW阶段被损坏。同时,在kV $ _3 $ _3 $ _5 $和CSV $ _3 $ _3 $ _5 $ _5 $中观察到了异常的大厅效应。在这里,我们报告了一项对高质量的RBV $ _3 $ SB $ _5 $单晶进行磁转运测量的全面研究。我们的数据表明,当电荷密度波状态发展时,RBV $ _3 $ _3 $ _5 $中的异常大厅效应的出现。低温限制下的异常大厅电阻率的大小与KV $ _3 $ sb $ _5 $和CSV $ _3 $ SB $ _5 $中的报告值相当。磁化通道进一步揭示了丰富的量子振荡频率,其中许多频率尚未报告。特别是,已经记录了占$ \ sim $ 56%的布里鲁因区域$ 56%的大量子振荡频率(2235 T)。对于具有足够信噪比的量子振荡频率,我们进一步执行依赖性测量值,并且我们的数据表明RBV $ _3 $ _3 $ SB $ _5 $中的二维费米表面。我们的结果提供了必不可少的信息,以了解Kagome Metals中的异常大厅效应和带状结构AV $ _3 $ SB $ _5 $。
AV$_3$Sb$_5$ (A=Cs, K, Rb) are recently discovered superconducting systems ($T_{\rm c}\sim0.9-2.5$ K) in which the vanadium atoms adopt the kagome structure. Intriguingly, these systems enter a charge-density-wave (CDW) phase ($T_{\rm CDW}\sim80-100$ K), and further evidence shows that the time-reversal symmetry is broken in the CDW phase. Concurrently, the anomalous Hall effect has been observed in KV$_3$Sb$_5$ and CsV$_3$Sb$_5$ inside the novel CDW phase. Here, we report a comprehensive study of a high-quality RbV$_3$Sb$_5$ single crystal with magnetotransport measurements. Our data demonstrate the emergence of anomalous Hall effect in RbV$_3$Sb$_5$ when the charge-density-wave state develops. The magnitude of anomalous Hall resistivity at the low temperature limit is comparable to the reported values in KV$_3$Sb$_5$ and CsV$_3$Sb$_5$. The magnetoresistance channel further reveals a rich spectrum of quantum oscillation frequencies, many of which have not been reported before. In particular, a large quantum oscillation frequency (2235 T), which occupies $\sim$56% of the Brillouin zone area, has been recorded. For the quantum oscillation frequencies with sufficient signal-to-noise ratio, we further perform field-angle dependent measurements and our data indicate two-dimensional Fermi surfaces in RbV$_3$Sb$_5$. Our results provide indispensable information for understanding the anomalous Hall effect and band structure in kagome metals AV$_3$Sb$_5$.