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欠掺杂La(2 - x)Sr(x)CuO4中的涡旋状激发与超导相涨落的起始

Vortex-like excitations and the onset of superconducting phase fluctuation in underdoped La(2-x)Sr(x)CuO4.

作者信息

Xu ZA, Ong NP, Wang Y, Kakeshita T, Uchida S

机构信息

Joseph Henry Laboratories of Physics, Princeton University, New Jersey 08544, USA.

出版信息

Nature. 2000 Aug 3;406(6795):486-8. doi: 10.1038/35020016.

Abstract

Two general features of a superconductor, which appear at the critical temperature, are the formation of an energy gap and the expulsion of magnetic flux (the Meissner effect). In underdoped copper oxides, there is strong evidence that an energy gap (the pseudogap) opens up at a temperature significantly higher than the critical temperature (by 100-220 K). Certain features of the pseudogap suggest that it is closely related to the gap that appears at the critical temperature (for example, the variation of the gap magnitudes around the Fermi surface and their maximum amplitudes are very similar). However, the Meissner effect is absent in the pseudogap state. The nature of the pseudogap state, and its relation (if any) to the superconducting state are central issues in understanding copper oxide superconductivity. Recent evidence suggests that, in the underdoped regime, the Meissner state is destroyed above the critical temperature by strong phase fluctuations (as opposed to a vanishing of the superfluid density). Here we report evidence for vortices (or vortex-like excitations) in La(2-x)Sr(x)CuO4 at temperatures significantly above the critical temperature. A thermal gradient is applied to the sample in a magnetic field. Vortices are detected by the large transverse electric field produced as they diffuse down the gradient (the Nernst effect). We find that the Nernst signal is anomalously enhanced at temperatures as high as 150 K.

摘要

超导体在临界温度时会出现两个普遍特征,即能隙的形成和磁通量的排斥(迈斯纳效应)。在欠掺杂的铜氧化物中,有强有力的证据表明,在远高于临界温度(高出100 - 220K)的温度下会打开一个能隙(赝能隙)。赝能隙的某些特征表明它与临界温度时出现的能隙密切相关(例如,费米面附近能隙大小的变化及其最大幅度非常相似)。然而,在赝能隙态中不存在迈斯纳效应。赝能隙态的本质及其与超导态的关系(如果有的话)是理解铜氧化物超导性的核心问题。最近的证据表明,在欠掺杂区域,迈斯纳态在临界温度以上会被强相位涨落破坏(与超流密度消失相反)。在此,我们报告了在远高于临界温度的温度下,La(2 - x)Sr(x)CuO4中存在涡旋(或类涡旋激发)的证据。在磁场中对样品施加一个热梯度。当涡旋沿梯度向下扩散时产生的大横向电场会检测到涡旋(能斯特效应)。我们发现,在高达150K的温度下,能斯特信号异常增强。

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