Pasupathy Abhay N, Pushp Aakash, Gomes Kenjiro K, Parker Colin V, Wen Jinsheng, Xu Zhijun, Gu Genda, Ono Shimpei, Ando Yoichi, Yazdani Ali
Joseph Henry Laboratories and Department of Physics, Princeton University, Princeton, NJ 08544, USA.
Science. 2008 Apr 11;320(5873):196-201. doi: 10.1126/science.1154700.
Identifying the mechanism of superconductivity in the high-temperature cuprate superconductors is one of the major outstanding problems in physics. We report local measurements of the onset of superconducting pairing in the high-transition temperature (Tc) superconductor Bi2Sr2CaCu2O8+delta using a lattice-tracking spectroscopy technique with a scanning tunneling microscope. We can determine the temperature dependence of the pairing energy gaps, the electronic excitations in the absence of pairing, and the effect of the local coupling of electrons to bosonic excitations. Our measurements reveal that the strength of pairing is determined by the unusual electronic excitations of the normal state, suggesting that strong electron-electron interactions rather than low-energy (<0.1 volts) electron-boson interactions are responsible for superconductivity in the cuprates.
确定高温铜酸盐超导体中的超导机制是物理学中主要的突出问题之一。我们使用扫描隧道显微镜的晶格跟踪光谱技术,报告了对高转变温度(Tc)超导体Bi2Sr2CaCu2O8+δ中超导配对起始的局部测量。我们可以确定配对能隙的温度依赖性、无配对时的电子激发以及电子与玻色子激发的局部耦合效应。我们的测量结果表明,配对强度由正常态下异常的电子激发决定,这表明强电子-电子相互作用而非低能(<0.1伏)电子-玻色子相互作用是铜酸盐中超导性的原因。