Unveiling the mechanism of non-conventional superconductivity through material genome engineering  

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作  者:X.-D.Xiang 

机构地区:[1]Department of materials science and engineering,and department of physics,southern university of science and technology,shenzhen 518055,china

出  处:《Frontiers of physics》2022年第3期7-8,共2页物理学前沿(英文版)

摘  要:Studying the complexity of the electronic phase diagram is at the heart of understanding strongly correlated system in general,with high Tc superconductors as the most known examples.High temperature superconductivity has a wide range of application potentials in power transmission,nuclear magnetic resonance,magnetic levitation transportation,aerospace,information and communication technologies,etc.Understanding its mechanism remains a long-standing challenge,due to its complex material structures and interlays among different phases such as charge density wave,antiferromagnetic and superconducting phases.As a result,this has greatly hindered its further development.

关 键 词:MECHANISM SUPERCONDUCTIVITY MAGNETIC 

分 类 号:O4[理学—物理]

 

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