论文标题

Kagome超导体的结构演变$ a $ v $ _3 $ sb $ _5 $($ a $ = k,rb和cs)通过充电密度波订单

Structural evolution of the kagome superconductors $A$V$_3$Sb$_5$ ($A$ = K, Rb, and Cs) through charge density wave order

论文作者

Kautzsch, Linus, Ortiz, Brenden R., Mallayya, Krishnanand, Plumb, Jayden, Pokharel, Ganesh, Ruff, Jacob P. C., Islam, Zahirul, Kim, Eun-Ah, Seshadri, Ram, Wilson, Stephen D.

论文摘要

Kagome超导体KV $ _3 $ SB $ _5 $,RBV $ _3 $ SB $ _5 $,CSV $ _3 $ _3 $ SB $ _5 $众所周知可以显示电荷密度浪潮(CDW)订单,从而影响其电子结构的拓扑特性。其结构接地态的细节以及它们如何随温度演化的方式在这里使用单晶X射线晶体学改进作为温度的函数,并用同步辐射进行。化合物KV $ _3 $ SB $ _5 $和RBV $ _3 $ SB $ _5 $ _5 $ thise 2 $ \ times $ 2 $ \ times $ 2 $ \ times $ 2 $ 2上层建筑在$ fmmm $ space Group中,带有交错的三 - 脱糖层变形。 CSV $ _3 $ SB $ _5 $显示更复杂的结构演化,其细节已通过将机器学习方法应用于散射数据来揭示。 Upon cooling through the CDW transition, CsV$_3$Sb$_5$ displays a staged progression of ordering from a 2$\times$2$\times$1 supercell and a 2$\times$2$\times$2 supercell into a final 2$\times$2$\times$4 supercell that persists to $T$ = 11 K and exhibits an average structure where vanadium layers display both Tri-Hexagonal和David变形模式的明星。在脉冲磁场下,CSV $ _3 $ _3 $ _5 $的衍射最高$μ_0H$ = 28 t表明CDW状态的实际组成部分对外部磁场不敏感。

The kagome superconductors KV$_3$Sb$_5$, RbV$_3$Sb$_5$, and CsV$_3$Sb$_5$ are known to display charge density wave (CDW) order which impacts the topological characteristics of their electronic structure. Details of their structural ground states and how they evolve with temperature are revealed here using single crystal X-ray crystallographic refinements as a function of temperature, carried out with synchrotron radiation. The compounds KV$_3$Sb$_5$ and RbV$_3$Sb$_5$ present 2$\times$2$\times$2 superstructures in the $Fmmm$ space group with a staggered tri-hexagonal deformation of vanadium layers. CsV$_3$Sb$_5$ displays more complex structural evolution, whose details have been unravelled by applying machine learning methods to the scattering data. Upon cooling through the CDW transition, CsV$_3$Sb$_5$ displays a staged progression of ordering from a 2$\times$2$\times$1 supercell and a 2$\times$2$\times$2 supercell into a final 2$\times$2$\times$4 supercell that persists to $T$ = 11 K and exhibits an average structure where vanadium layers display both tri-hexagonal and Star of David patterns of deformations. Diffraction from CsV$_3$Sb$_5$ under pulsed magnetic fields up to $μ_0H$ = 28 T suggest the real component of the CDW state is insensitive to external magnetic fields.

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