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典型文献
Unveiling the mechanism of non-conventional superconductivity through material genome engineering
文献摘要:
Studying the complexity of the electronic phase diagram is at the heart of understanding strongly correlated sys-tem in general,with high Tc superconductors as the most known examples.High temperature superconductivity has a wide range of application potentials in power trans-mission,nuclear magnetic resonance,magnetic levitation transportation,aerospace,information and communica-tion technologies,etc.Understanding its mechanism re-mains a long-standing challenge,due to its complex mate-rial structures and interlays among different phases such as charge density wave,antiferromagnetic and supercon-ducting phases.As a result,this has greatly hindered its further development.
文献关键词:
作者姓名:
X.-D.Xiang
作者机构:
Department of Materials Science and Engineering,and Department of Physics,Southern University of Science and Technology,Shenzhen 518055,China
文献出处:
引用格式:
[1]X.-D.Xiang-.Unveiling the mechanism of non-conventional superconductivity through material genome engineering)[J].物理学前沿,2022(03):7-8
A类:
interlays
B类:
Unveiling,mechanism,conventional,superconductivity,through,material,genome,engineering,Studying,complexity,electronic,diagram,heart,understanding,strongly,correlated,sys,general,high,Tc,superconductors,most,known,examples,High,temperature,wide,range,application,potentials,power,mission,nuclear,resonance,levitation,transportation,aerospace,information,communica,technologies,etc,Understanding,its,mains,long,challenge,due,structures,among,different,phases,such,charge,density,wave,antiferromagnetic,ducting,result,this,greatly,hindered,further,development
AB值:
0.666063
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