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首页> 外文期刊>Nature Communications >The microscopic structure of charge density waves in underdoped YBa2Cu3O6.54 revealed by X-ray diffraction
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The microscopic structure of charge density waves in underdoped YBa2Cu3O6.54 revealed by X-ray diffraction

机译:X射线衍射揭示YBa2Cu3O6.54掺杂不足的电荷密度波的微观结构

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Charge density wave (CDW) order appears throughout the underdoped high-temperature cuprate superconductors, but the underlying symmetry breaking and the origin of the CDW remain unclear. We use X-ray diffraction to determine the microscopic structure of the CDWs in an archetypical cuprate YBa2Cu3O6.54 at its superconducting transition temperature similar to 60 K. We find that the CDWs in this material break the mirror symmetry of the CuO2 bilayers. The ionic displacements in the CDWs have two components, which are perpendicular and parallel to the CuO2 planes, and are out of phase with each other. The planar oxygen atoms have the largest displacements, perpendicular to the CuO2 planes. Our results allow many electronic properties of the underdoped cuprates to be understood. For instance, the CDWs will lead to local variations in the electronic structure, giving an explicit explanation of density-wave states with broken symmetry observed in scanning tunnelling microscopy and soft X-ray measurements.
机译:在整个掺杂不足的高温铜酸盐超导体中都出现了电荷密度波(CDW)的顺序,但是潜在的对称性破坏和CDW的起源仍然不清楚。我们使用X射线衍射确定原型铜酸盐YBa2Cu3O6.54中CDW在其类似于60 K的超导转变温度下的微观结构。我们发现这种材料中的CDW破坏了CuO2双层的镜像对称性。 CDW中的离子位移具有两个分量,这些分量垂直且平行于CuO2平面,并且彼此异相。垂直于CuO2平面的平面氧原子具有最大的位移。我们的结果使人们可以理解低掺杂铜酸盐的许多电子性质。例如,CDW将导致电子结构的局部变化,从而给出密度波状态的明确解释,这种密度波状态在扫描隧道显微镜和软X射线测量中观察到对称性破坏。

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