상세 보기
- Song, Dongjoon;
- Lee, Suheon;
- Shen, Zecheng;
- Jung, Woobin;
- Lee, Wonjun;
- ... Choi, Kwang-Yong;
- 외 11명
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0초록
Antiferromagnetic spin fluctuations are the most promising candidate as the pairing glue of high critical temperature (Tc) superconductivity in cuprates. However, many-body states and intertwined orders have made it difficult to determine how electrons couple with fluctuating spins to form Cooper pairs. Recent experimental and theoretical studies have suggested spin fluctuation-driven quasiparticle band folding, but the relationship between the resultant Fermi pockets and superconductivity remains unclear. Here, using angle-resolved photoemission spectroscopy and numerical simulations, we show a proportional relationship between Tc and the quasiparticle weight of the incipient hole pocket near the nodal point in electron-doped Pr1-xLaCexCuO4 +/-delta. Through complementary muon spin spectroscopy measurements, we uncover that the hole pocket forms only in the regime of the fluctuating antiferromagnetic ground state around a presumed quantum critical point. Our observations highlight the significance of the electron-spin fluctuation interaction in enhancing the hole pocket and consequently driving superconductivity.
키워드
- 제목
- Interplay between hole superconductivity and quantum critical antiferromagnetic fluctuations in electron-doped cuprates
- 저자
- Song, Dongjoon; Lee, Suheon; Shen, Zecheng; Jung, Woobin; Lee, Wonjun; Choi, Sungkyun; Kyung, Wonshik; Jung, Saegyeol; Cheng, Cheng-Maw; Kwon, Junyoung; Ishida, S.; Yoshida, Y.; Park, Seung Ryong; Eisaki, H.; Wang, Yao; Choi, Kwang-Yong; Kim, C.
- 발행일
- 2025-03
- 유형
- Article
- 권
- 16
- 호
- 1