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Tuning superconductivity in highly crystalline Pb1−xBix alloy ultrathin films at atomic level

Kun Xie, Pengju Li, Liangliang Liu, Runxiao Zhang, Yumin Xia, Haohao Shi, Desheng Cai, Yitong Gu, Limin She, Yeheng Song, Weifeng Zhang, Zhenyu Zhang, Yu Jia, Shengyong Qin

DOI 10.1103/PhysRevB.107.104511 · Physical Review B

T1

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Abstract

Achieving highly crystalline superconductors with reduced dimensionality and fine-tuning their superconductivity have been daunting challenges in condensed matter physics. Here, we have successfully grown two-monolayer highly crystalline Pb1−xBix(111) films with controllable Bi concentrations x by molecular beam epitaxy and systematically studied their structural and superconducting properties by scanning tunneling microscopy. We first show that the superconducting transition temperatures of Pb1−xBix films exhibit a domelike behavior with increasing Bi concentration x. Our first-principles calculations reveal that Bi doping can promote the electronic states and the electron-phonon coupling strength at lower x and suppress the electron-phonon coupling strength and superconductivity with largely Bi electronic states when Bi doping increases over a critical ratio. Our findings not only demonstrate a quantum phenomenon of superconductivity in highly crystalline alloyed films but also provide a practical pathway to tune the superconductivity at the atomic level.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
Pb1-xBix

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3.1Pressure unresolvedunknown
Pb0.5Bi0.5

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3.1Pressure unresolvedunknown
Pb

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5Pressure not reportedunknown
Pb0.75Bi0.25

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6.6Pressure not reportedunknown
Pb0.5Bi0.5

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4.7Pressure not reportedunknown

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