學術活動
量子材料
Unconventional Superconductivity: Beyond the BCS Paradigm
浏覽次數:
主講人: 聞海虎 (南京大學)
地點: beat365西563會議室
時間: 2021年4月21日 (周三)下午3:00
主持 聯系人: 王健<jianwangphysics@pku.edu.cn>
主講人簡介: 聞海虎, 南京大學教授,博士生導師,南京大學超導物理和材料研究中心主任,國家傑出青年基金獲得者(1996),教育部“長江特聘”教授(2012),國家“萬人計劃”領軍人才(2016),美國物理學會會士(2013)。曾獲得國家自然科學一等獎(第四完成人)和二等獎(第一完成人)各一項。
長期從事超導和低溫物理研究,在高溫超導體磁通動力學,高溫超導機理問題和非常規超導材料合成和物理性質研究方面獲得一批重要成果。在SCI 雜志上發表論文 400 餘篇,包括Nature 子刊17篇, Science Advances 2 篇,Physical Review Letter/X 20篇, 文章被他人引用超過10000篇次,h-index 53, 在國内外重要學術會議上作邀請報告過百場。

摘要:

It is well established that the formation and condensation of Cooper pairs are the two key factors to induce superconductivity in condensed matter, however the ways for the Cooper pairs to form and condense are very different in distinct material systems. I will start from the very basic knowledge of the BCS theory, then extend to the cuprate and iron based superconductors, main from the experimental point of view. In the cuprate system, the superconductivity may arise by doping to the Mott insulator, and the normal states shows many abnormal properties. In the iron based superconductors, moderate correlation exists and multiband physics are involved. But both systems show the pairing in the strong coupling limit. I will show some interesting points which are at odd with the BCS theory, and illustrate that the correlation effect and repulsive interaction may be the common strings to form high temperature superconductivity at ambient pressure. A picture concerning the evolution from BCS to BEC type condensation is proposed.