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Photoluminescence and photoabsorption blueshift of nanostructured ZnO: Skin-depth quantum trapping and electron-phonon coupling

  • J. W. Li
  • , X. J. Liu
  • , L. W. Yang
  • , Z. F. Zhou
  • , G. F. Xie
  • , Y. Pan
  • , X. H. Wang
  • , J. Zhou
  • , L. T. Li
  • , Likun Pan
  • , Zhuo Sun
  • , Chang Q. Sun
  • XiangTan University
  • Tsinghua University
  • Nanyang Technological University

科研成果: 期刊稿件文章同行评审

摘要

Although the size- and shape-induced blueshift in the photoluminescence and photoabsorption of nanostructured ZnO has been extensively investigated, the underlying mechanism remains yet unclear. Here we show that theoretical reproduction of the observed trends clarifies that the blueshift originates from the Hamiltonian perturbation due to the broken-bond-induced local strain and quantum trapping and electron-phonon coupling in the surface skin up to two atomic layers in depth while bonds in the core interior retain their bulk nature. The extent of the blue shift depends on the tunable fraction of undercoordinated atoms in the surface skin. Therefore, the quantum confinement effect is indeed more "superficial" than first thought [H. Winn, OE Mag. 8, 10 (2005)].

源语言英语
文章编号031906
期刊Applied Physics Letters
95
3
DOI
出版状态已出版 - 2009

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