2012arXiv (Cornell University)Open access

Coexisting pseudo-gap and superconducting gap in the high-Tc superconductor La2-xSrxCuO4

T. Yoshida, Walid Malaeb, S. Ideta, A. Fujimori, Dong-Hui Lu, R. G. Moor, Zhi‐Xun Shen, Mario Okawa, T. Kiss, K. Ishizaka, Shik Shin, Seiki Komiya, Yoichi Ando, H. Eisaki, S. Uchida

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Abstract

Relationship between the superconducting gap and the pseudogap has been the subject of controversies. In order to clarify this issue, we have studied the superconducting gap and pseudogap of the high-Tc superconductor La2-xSrxCuO4 (x=0.10, 0.14) by angle-resolved photoemission spectroscopy (ARPES). Through the analysis of the ARPES spectra above and below Tc, we have identified a superconducting coherence peak even in the anti-nodal region on top of the pseudogap of a larger energy scale. The superconducting peak energy nearly follows the pure d-wave form. The d-wave order parameter Δ_0 [defined by Δ(k)=Δ_0(cos(kxa)-cos(kya)) ] for x=0.10 and 0.14 are nearly the same, Δ_0 ~ 12-14 meV, leading to strong coupling 2Δ_0/kB Tc ~ 10. The present result indicates that the pseudogap and the superconducting gap are distinct phenomena and can be described by the "two-gap" scenario.

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Relationship between the superconducting gap and the pseudogap has been the subject of controversies. In order to clarify this issue, we have studied the superconducting gap and pseudogap of the high-Tc superconductor La2-xSrxCuO4 (x=0.10, 0.14) by angle-resolved photoemission spectroscopy (ARPES). Through the analysis of the ARPES spectra above and below Tc, we have identified a superconducting coherence peak even in the anti-nodal region on top of the pseudogap of a larger energy scale. The superconducting peak energy nearly follows the pure d-wave form. The d-wave order parameter Δ_0 [defined by Δ(k)=Δ_0(cos(kxa)-cos(kya)) ] for x=0.10 and 0.14 are nearly the same, Δ_0 ~ 12-14 meV, leading to strong coupling 2Δ_0/kB Tc ~ 10. The present result indicates that the pseudogap and the superconducting gap are distinct phenomena and can be described by the "two-gap" scenario.

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Available abstract

Relationship between the superconducting gap and the pseudogap has been the subject of controversies. In order to clarify this issue, we have studied the superconducting gap and pseudogap of the high-Tc superconductor La2-xSrxCuO4 (x=0.10, 0.14) by angle-resolved photoemission spectroscopy (ARPES). Through the analysis of the ARPES spectra above and below Tc, we have identified a superconducting coherence peak even in the anti-nodal region on top of the pseudogap of a larger energy scale. The superconducting peak energy nearly follows the pure d-wave form. The d-wave order parameter Δ_0 [defined by Δ(k)=Δ_0(cos(kxa)-cos(kya)) ] for x=0.10 and 0.14 are nearly the same, Δ_0 ~ 12-14 meV, leading to strong coupling 2Δ_0/kB Tc ~ 10. The present result indicates that the pseudogap and the superconducting gap are distinct phenomena and can be described by the "two-gap" scenario.

Key concepts: Pseudogap, Superconductivity, Angle-resolved photoemission spectroscopy, Condensed matter physics, Physics, Photoemission spectroscopy, Band gap, Order (exchange)

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