硼化镁
超导电性
凝聚态物理
转变温度
电阻率和电导率
氧化铜
材料科学
铜
氧化物
磁化
铜酸盐
兴奋剂
镁
冶金
物理
磁场
临界电流
量子力学
作者
Jun Nagamatsu,Norimasa Nakagawa,T. Muranaka,Yuji Zenitani,Jun Akimitsu
出处
期刊:Nature
[Springer Nature]
日期:2001-03-01
卷期号:410 (6824): 63-64
被引量:6052
摘要
In the light of the tremendous progress that has been made in raising the transition temperature of the copper oxide superconductors (for a review, see ref. 1), it is natural to wonder how high the transition temperature, Tc, can be pushed in other classes of materials. At present, the highest reported values of Tc for non-copper-oxide bulk superconductivity are 33 K in electron-doped CsxRbyC60 (ref. 2), and 30 K in Ba1-xKxBiO3 (ref. 3). (Hole-doped C60 was recently found4 to be superconducting with a Tc as high as 52 K, although the nature of the experiment meant that the supercurrents were confined to the surface of the C60 crystal, rather than probing the bulk.) Here we report the discovery of bulk superconductivity in magnesium diboride, MgB2. Magnetization and resistivity measurements establish a transition temperature of 39 K, which we believe to be the highest yet determined for a non-copper-oxide bulk superconductor.
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