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最佳掺杂超导YBa2Cu3O6.95中磁激发的色散

Dispersion of magnetic excitations in optimally doped superconducting YBa2Cu3O6.95.

作者信息

Reznik D, Bourges P, Pintschovius L, Endoh Y, Sidis Y, Masui T, Tajima S

机构信息

Forschungszentrum Karlsruhe, Institut für Festkörperphysik, Postfach 3640, D-76021 Karlsruhe, Germany.

出版信息

Phys Rev Lett. 2004 Nov 12;93(20):207003. doi: 10.1103/PhysRevLett.93.207003. Epub 2004 Nov 10.

Abstract

Detailed neutron scattering measurements of YBa2Cu3O6.95 found that the resonance peak and incommensurate magnetic scattering induced by superconductivity represent the same physical phenomenon: two dispersive branches that converge near 41 meV and the in-plane wave vector q(AF)=(pi/a,pi/a) to form the resonance peak. One branch has a circular symmetry around q(AF) and quadratic downward dispersion from approximately 41 meV to the spin gap of 33+/-1 meV. The other, of lower intensity, disperses from approximately 41 meV to at least 55 meV. Our results exclude a quartet of vertical incommensurate rods in q-omega space expected from spin waves produced by dynamical charge stripes as an origin of the observed incommensurate scattering in optimally doped YBCO.

摘要

对YBa2Cu3O6.95进行的详细中子散射测量发现,超导诱导的共振峰和非 commensurate磁散射代表相同的物理现象:两个色散分支在接近41毫电子伏特和面内波矢q(AF)=(π/a,π/a)处汇聚形成共振峰。一个分支在q(AF)周围具有圆对称性,从大约41毫电子伏特到33±1毫电子伏特的自旋能隙呈二次向下色散。另一个强度较低的分支从大约41毫电子伏特色散到至少55毫电子伏特。我们的结果排除了动态电荷条纹产生的自旋波在q-ω空间中预期的四重垂直非 commensurate棒状结构作为最佳掺杂YBCO中观察到的非 commensurate散射的起源。

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