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Yuanchen Xie

University of Macau
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  • University of Macau
    Department of Philosophy
    Undergraduate
  • All publications (3)
  •  186
    The quality of clinical practice guidelines in China: a systematic assessment
    with J. Hu, R. Chen, S. Wu, J. Tang, G. Leng, I. Kunnamo, Z. Yang, W. Wang, X. Hua, Y. Zhang, and S. Zhan
    Journal of Evaluation in Clinical Practice 19 (5): 961-967. 2013.
    Philosophy of Medicine
  • Cultures of Mathematics and Logic. Trends in the History of Science (edited book)
    with S. Ju, B. Löwe, and T. Müller
    . 2016.
    Mathematical PracticeHistory of Mathematics
  •  21
    Ubiquitous strong electron-phonon coupling at the interface of FeSe/SrTiO 3
    with C. Zhang, Z. Liu, Z. Chen, R. He, S. Tang, J. He, W. Li, T. Jia, S. N. Rebec, E. Y. Ma, H. Yan, M. Hashimoto, D. Lu, S. K. Mo, Y. Hikita, R. G. Moore, H. Y. Hwang, D. Lee, and Z. Shen
    © The Author 2017.The observation of replica bands in single-unit-cell FeSe on SrTiO3 by angle-resolved photoemission spectroscopy has led to the conjecture that the coupling between FeSe electrons and the STO phonons are responsible for the enhancement of T c over other FeSe-based superconductors. However the recent observation of a similar superconducting gap in single-unit-cell FeSe/STO raised the question of whether a similar mechanism applies. Here we report the ARPES study of the electroni…Read more
    © The Author 2017.The observation of replica bands in single-unit-cell FeSe on SrTiO3 by angle-resolved photoemission spectroscopy has led to the conjecture that the coupling between FeSe electrons and the STO phonons are responsible for the enhancement of T c over other FeSe-based superconductors. However the recent observation of a similar superconducting gap in single-unit-cell FeSe/STO raised the question of whether a similar mechanism applies. Here we report the ARPES study of the electronic structure of FeSe/STO. Similar to the results in FeSe/STO, clear replica bands are observed. We also present a comparative study of STO and STO bare surfaces, and observe similar replica bands separated by approximately the same energy, indicating this coupling is a generic feature of the STO surfaces and interfaces. Our findings suggest that the large superconducting gaps observed in FeSe films grown on different STO surface terminations are likely enhanced by a common mechanism.
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