學術活動
量子材料
Cuprate high-temperature superconductivity in the extreme two-dimensional limit
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主講人: 張遠波教授 (上海複旦大學)
地點: 騰訊會議 ID: 868-517-654
時間: 2022年3月16日 (周三)下午3:00
主持 聯系人: 陳劍豪 <chenjianhao@pku.edu.cn>
主講人簡介: 張遠波教授長期工作在低維材料介觀輸運與掃描探針研究領域,在低維狄拉克半金屬、低維高遷移半導體、低維關聯材料、低維磁性材料、低維本征磁性拓撲絕緣體、超薄高溫超導體等領域都作出了突破性貢獻。他在2000年畢業于beat365,獲物理學本科學位,2006年于美國哥倫比亞大學獲得物理學博士學位,2006-2009年在加州大學伯克利分校任Miller Postdoc Fellow,2010年在IBM Almaden Research Center 進行博士後研究,于2011年在複旦大學任教授至今。
他的學術貢獻受到廣泛的認可,獲得獎項和稱号主要包括:哥倫比亞大學Charles Townes Fellowship (2005); 加州大學Miller Fellow (2006); IUPAP Young Scientist Prize, International Union of Pure and Applied Physics (2010); Nishina Asia Award, Nishina Memorial Foundation, Japan (2014); 國家JQ(2014);教育部CJ 學者 (2017); 科學探索獎(2020)。

Abstract:

Recent experiment has demonstrated that two CuO2 planes in a monolayer Bi2Sr2CaCu2O8+δ (Bi2212) contain all essential physics of high-temperature superconductivity. Here, we study cuprate superconductor in the two-dimensional limit—monolayer of Bi2Sr2CuO6+δ (Bi2201) that contains only one CuO2 plane. The extreme thickness brings unprecedented tunability; we succeed in covering the entire phase diagram of Bi2201 with controlled oxygenation in a single monolayer specimen, enabling us to demonstrate an anomalous metallic ground state between the superconducting and insulating region. Although the high-temperature superconductivity, along with various other correlated phenomena, persists in the monolayer, for the first time, we discover the dimensional effect in cuprate superconductors: optimal transition temperature in monolayer Bi2201 is ~ 3 K lower than that of bulk samples. Our results establish monolayer Bi2201 as a new two-dimensional material with highly tunable high-temperature superconductivity and a minimal model system of cuprate superconductor.