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作 者:Fu-Chun Zhang
机构地区:[1]Department of Physics, Zhejiang University, Hangzhou 310027, China
出 处:《Science Bulletin》2016年第16期1236-1238,共3页科学通报(英文版)
摘 要:High transition temperatureeTcTsuperconductivity in cuprates remains to be one of the most challenging topics in condensed matter physics[1–5].Despite worldwide efforts in the past 30 years since itsHigh transition temperature (To) superconductivity in cuprates remains to be one of the most challenging topics in condensed matter physics [1-5]. Despite world- wide efforts in the past 30 years since its discovery [2] in 1986, the physics community has still not reached a consensus what causes Tc so high [3-5]. All the high Tc superconducting copper oxides have layered structures. Superconducting layers CuO2 are sandwiched by nonconducting charge reservoir layers. Modulation of charge carriers in the CuO2 planes are realized through substi- tution of chemical elements in non-conducting planes. The article published in this issue of Science Bulletin, by Xue's team [1] in Tsinghua University,
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