论文标题

强大的LA $ _ {2-X} $ SR $ _X $ CUO $ _4 $:Josephson偶联的强度超导体的证据

Strongly-overdoped La$_{2-x}$Sr$_x$CuO$_4$: Evidence for Josephson-coupled grains of strongly-correlated superconductor

论文作者

Li, Yangmu, Sapkota, A., Lozano, P. M., Du, Zengyi, Li, Hui, Wu, Zebin, Kundu, Asish K., Koch, R. J., Wu, Lijun, Winn, B. L., Chi, Songxue, Matsuda, M., Frontzek, M., Bozin, E. S., Zhu, Yimei, Bozovic, I., Pasupathy, Abhay N., Drozdov, Ilya K., Fujita, Kazuhiro, Gu, G. D., Zaliznyak, Igor, Li, Qiang, Tranquada, J. M.

论文摘要

在大孔掺杂的铜层中,对超导性如何消失的解释引起了争议。为了解决这个问题,我们介绍了一项实验研究,对LA $ _ {2-x} $ sr $ _x $ cuo $ _4 $(LSCO)的单晶和薄膜样品,带有$ x \ ge0.25 $。特别是,在$ x = 0.25 $的LSCO晶体上的散装易感性的测量表明,Diamagnetism在$ T_ {C1} = 38.5 $ K处的发作,并在$ t_ {C2} = 18 $ K处急剧过渡到一个相位,并具有完整的散装屏蔽,独立于场方向。令人惊讶的是,平面电阻率仅在$ t_ {c2} $时为零。与较低的掺杂水平相比,$ x = 0.25 $ crystals上的非弹性中子散射证实存在强度降低的低能不相差激发。旋转间隙与$ t_ {C2} $的比例异常大。我们的结果与Spivak,Oreto和Kivelson强烈过度过量的铜酸盐的理论预测一致,其中最初在脱离连接的自组织的自组织谷物内形成的超导性以降低的孔浓度为特征,仅在较高的浓度中才能在超级传导性的情况下引起散装超导性,仅在超级传导性中才会在周围的浓度中产生。除了超导到金属的过渡外,LSCO薄膜上的局部差分电导测量表明,配对相关性的区域幸存下来,但太稀释了,无法支撑超导顺序。将需要进行未来的实验,以测试这些结果通常适用于过多的铜矿的程度。

The interpretation of how superconductivity disappears in cuprates at large hole doping has been controversial. To address this issue, we present an experimental study of single-crystal and thin film samples of La$_{2-x}$Sr$_x$CuO$_4$ (LSCO) with $x\ge0.25$. In particular, measurements of bulk susceptibility on LSCO crystals with $x=0.25$ indicate an onset of diamagnetism at $T_{c1}=38.5$ K, with a sharp transition to a phase with full bulk shielding at $T_{c2}=18$ K, independent of field direction. Strikingly, the in-plane resistivity only goes to zero at $T_{c2}$. Inelastic neutron scattering on $x=0.25$ crystals confirms the presence of low-energy incommensurate magnetic excitations with reduced strength compared to lower doping levels. The ratio of the spin gap to $T_{c2}$ is anomalously large. Our results are consistent with a theoretical prediction for strongly overdoped cuprates by Spivak, Oreto, and Kivelson, in which superconductivity initially develops within disconnected self-organized grains characterized by a reduced hole concentration, with bulk superconductivity occurring only after superconductivity is induced by proximity effect in the surrounding medium of higher hole concentration. Beyond the superconducting-to-metal transition, local differential conductance measurements on an LSCO thin film suggest that regions with pairing correlations survive, but are too dilute to support superconducting order. Future experiments will be needed to test the degree to which these results apply to overdoped cuprates in general.

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