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Flux pinning evolution in multilayer Pb/Ge/Pb/Ge/Pb superconducting systems
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作者 高礼鑫 张晓珂 +3 位作者 张安蕾 肖祁陵 陈飞 葛军饴 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第3期491-496,共6页
Multicomponent superconductors exhibit nontrivial vortex behaviors due to the various vortex–vortex interactions,including the competing one in the recently proposed type-1.5 superconductor.However,potential candidat... Multicomponent superconductors exhibit nontrivial vortex behaviors due to the various vortex–vortex interactions,including the competing one in the recently proposed type-1.5 superconductor.However,potential candidate that can be used to study the multicomponent superconductivity is rare.Here,we prepared an artificial superconducting multilayer to act as an alternative approach to study multicomponent superconductivity.The additional repulsive length and the coupling strength among superconducting films were regulated by changing the thickness of the insulting layer.The magnetization measurements were performed to clarify the effect of the competition between the repulsive vortex interactions on the macroscopic superconductivity.The vortex phase diagram and the optimum critical current density have been determined.Furthermore,a second magnetization effect is observed,and is attributed to the upper layer,which provides the weak pinning sites to localize the flux lines.The pinning behaviors switches to the mixed type with the increase of the insulting layer thicknesses.Our results open a new perspective to the study and related applications of the multilayer superconducting systems. 展开更多
关键词 multilayer superconducting film competing interaction flux pinning mechanism
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超导中的量子磁通涡旋 被引量:1
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作者 张安蕾 葛军饴 《自然杂志》 CAS 2021年第4期287-296,共10页
超导体具有零电阻和完全抗磁性的宏观物性,在能源、交通、医疗等方面具有重要的应用价值,吸引着无数的科学家致力于此。此外,其超导物性及微观机理的研究也极大地促进了凝聚态物理强关联体系和量子力学等基础学科的发展。至今,诺贝尔物... 超导体具有零电阻和完全抗磁性的宏观物性,在能源、交通、医疗等方面具有重要的应用价值,吸引着无数的科学家致力于此。此外,其超导物性及微观机理的研究也极大地促进了凝聚态物理强关联体系和量子力学等基础学科的发展。至今,诺贝尔物理学奖已先后5次授予10位从事超导研究的科学家。文章主要谈及与超导体宏观物性紧密关联的一个量子化微小物质——磁通涡旋,希望能够从涡旋物质这一超导研究领域的冰山一角,和大家一起见微知著、睹始知终,一窥超导体物理现象的奇妙,一览相关前沿应用的风采。 展开更多
关键词 涡旋 超导体 磁通量子 钉扎
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