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成像欠掺杂Bi2Sr2CaCu2O8+δ中高温超导的颗粒结构。

Imaging the granular structure of high-Tc superconductivity in underdoped Bi2Sr2CaCu2O8+delta.

作者信息

Lang K M, Madhavan V, Hoffman J E, Hudson E W, Eisaki H, Uchida S, Davis J C

机构信息

Department of Physics, University of California, Berkeley, California 94720, USA.

出版信息

Nature. 2002 Jan 24;415(6870):412-6. doi: 10.1038/415412a.

Abstract

Granular superconductivity occurs when microscopic superconducting grains are separated by non-superconducting regions; Josephson tunnelling between the grains establishes the macroscopic superconducting state. Although crystals of the copper oxide high-transition-temperature (high-Tc) superconductors are not granular in a structural sense, theory suggests that at low levels of hole doping the holes can become concentrated at certain locations resulting in hole-rich superconducting domains. Granular superconductivity arising from tunnelling between such domains would represent a new view of the underdoped copper oxide superconductors. Here we report scanning tunnelling microscope studies of underdoped Bi2Sr2CaCu2O8+delta that reveal an apparent segregation of the electronic structure into superconducting domains that are approximately 3 nm in size (and local energy gap <50 meV), located in an electronically distinct background. We used scattering resonances at Ni impurity atoms as 'markers' for local superconductivity; no Ni resonances were detected in any region where the local energy gap Delta > 50 +/- 2.5 meV. These observations suggest that underdoped Bi2Sr2CaCu2O8+delta is a mixture of two different short-range electronic orders with the long-range characteristics of a granular superconductor.

摘要

当微观超导颗粒被非超导区域分隔时,就会出现颗粒超导现象;颗粒之间的约瑟夫森隧穿建立了宏观超导态。尽管铜氧化物高温超导体的晶体在结构上并非颗粒状,但理论表明,在低水平的空穴掺杂情况下,空穴会集中在某些位置,从而形成富空穴超导畴。由这些畴之间的隧穿产生的颗粒超导将代表对欠掺杂铜氧化物超导体的一种新观点。在此,我们报告了对欠掺杂Bi2Sr2CaCu2O8+δ的扫描隧道显微镜研究,结果显示电子结构明显分离成尺寸约为3纳米(局部能隙<50毫电子伏特)的超导畴,这些畴位于电子性质不同的背景中。我们利用镍杂质原子处的散射共振作为局部超导的“标记”;在局部能隙Δ>50±2.5毫电子伏特的任何区域均未检测到镍共振。这些观察结果表明,欠掺杂的Bi2Sr2CaCu2O8+δ是两种不同短程电子序的混合物,具有颗粒超导体的长程特性。

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