论文标题

与库达群中的伪造超导体中的伪合作崩溃有关的自旋波动

Spin fluctuations associated with the collapse of the pseudogap in a cuprate superconductor

论文作者

Zhu, M., Voneshen, D. J., Raymond, S., Lipscombe, O. J., Tam, C. C., Hayden, S. M.

论文摘要

丘比特人中超导性的起源理论取决于对其正常状态的理解,该状态表现出各种竞争命令。 LA $ _ {2-x} $ sr $ _x $ cuo $ _4 $显示量子关键点的签名,包括电子特异性热量$ c $ cu $ p $ p $,掺杂$ p^{\ star} $ pseudogogap collapses collapses collapses。与该峰相关的波动的基本性质尚不清楚。在这里,我们使用非弹性中子散射来表明接近$ t_c $,接近$ p^{\ star} $,有非常低的能量集体旋转激励,具有特征性的能量$ \hbarγ\ $〜$〜$ 〜5 mev。冷却和施加8.8 〜t磁场会产生一个混合状态,其磁反应更强,低于10〜MEV。我们得出的结论是,低能量自旋 - 裂开是由于伪群的崩溃与磁性秩序的潜在趋势相结合。我们表明,可以从集体自旋波动来理解$ p^{\ star} $附近的大特定热量。我们测量的自旋波动存在于超导相图上,可能与在过量的铜层中观察到的奇怪金属行为有关。

Theories of the origin of superconductivity in cuprates are dependent on an understanding of their normal state which exhibits various competing orders. Transport and thermodynamic measurements on La$_{2-x}$Sr$_x$CuO$_4$ show signatures of a quantum critical point, including a peak in the electronic specific heat $C$ versus doping $p$, near the doping $p^{\star}$ where the pseudogap collapses. The fundamental nature of the fluctuations associated with this peak is unclear. Here we use inelastic neutron scattering to show that close to $T_c$ and near $p^{\star}$, there are very-low-energy collective spin excitations with characteristic energies $\hbar Γ\approx$~5 meV. Cooling and applying a 8.8~T magnetic field creates a mixed state with a stronger magnetic response below 10~meV. We conclude that the low-energy spin-fluctuations are due to the collapse of the pseudogap combined with an underlying tendency to magnetic order. We show that the large specific heat near $p^{\star}$ can be understood in terms of collective spin fluctuations. The spin fluctuations we measure exist across the superconducting phase diagram and may be related to the strange metal behaviour observed in overdoped cuprates.

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