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The Meissner effect in a strongly underdoped cuprate above its critical temperature

机译:高于临界温度的重掺杂铜酸盐中的迈斯纳效应

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摘要

The Meissner effect and associated perfect 'bulk' diamagnetism together with zero resistance and gap opening are characteristic features of the superconducting state. In the pseudogap state of cuprates, unusual diamagnetic signals and anomalous proximity effects have been detected, but a Meissner effect has never been observed. Here we probe the local diamagnetic response in the normal state of an underdoped La1.94Sr0.06CuO4 layer (Tc′≤5 K), which is brought into close contact with two nearly optimally doped La1.84Sr0.16CuO4 layers (Tc≈32 K). We show that the entire 'barrier' layer of thickness, much larger than the typical c axis coherence lengths of cuprates, exhibits a Meissner effect at temperatures above Tc′ but below Tc. The temperature dependence of the effective penetration depth and superfluid density in different layers indicates that superfluidity with long-range phase coherence is induced in the underdoped layer by the proximity to optimally doped layers, but this induced order is sensitive to thermal excitation.
机译:迈斯纳效应和相关的完美“体”抗磁性以及零电阻和间隙开口是超导状态的特征。在铜酸盐的伪间隙状态下,已经检测到异常的反磁信号和异常的邻近效应,但是从未观察到迈斯纳效应。在这里,我们研究了未掺杂La1.94Sr0.06CuO4层(Tc'≤5K)在正常状态下的局部抗磁响应,该层与两个几乎最佳掺杂的La1.84Sr0.16CuO4层(Tc≈32K)紧密接触)。我们表明,整个“屏障”层的厚度远大于铜酸盐的典型c轴相干长度,在高于Tc'但低于Tc的温度下表现出迈斯纳效应。有效渗透深度和不同层中超流体密度的温度相关性表明,欠掺杂层中靠近最佳掺杂层的位置会诱导出具有长相相干性的超流体,但是这种诱导顺序对热激发敏感。

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