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@ARTICLE{Ueba:2772,
      author       = {Ueba, H. and Persson, B. N. J.},
      title        = {{H}eating of adsorbate by vibrational-mode coupling},
      journal      = {Physical review / B},
      volume       = {77},
      number       = {3},
      issn         = {1098-0121},
      address      = {College Park, Md.},
      publisher    = {APS},
      reportid     = {PreJuSER-2772},
      pages        = {035413},
      year         = {2008},
      note         = {Record converted from VDB: 12.11.2012},
      abstract     = {We present a theory for the energy transfer between
                      adsorbates and ultrafast laser heated hot electrons in the
                      presence of the vibrational-mode coupling. This mode
                      coupling provides another source of vibrational heating, in
                      addition to the direct heating by hot electrons via friction
                      coupling. The theory is general and accurate and easy to
                      implement to analyze adsorbate motions induced by
                      femtosecond laser heating of the adsorbate and/or metal
                      systems. The heat transfer equation for the coupled harmonic
                      oscillators is applied to the recent time-resolved studies
                      of hopping of carbon monoxide and atomic oxygen on Pt
                      surfaces. It is found that the temperature of the frustrated
                      translation mode responsible for hopping can become high
                      enough, even when its direct friction coupling to the hot
                      electrons is too weak to induce motion.},
      keywords     = {J (WoSType)},
      cin          = {IFF-1},
      ddc          = {530},
      cid          = {I:(DE-Juel1)VDB781},
      pnm          = {Kondensierte Materie},
      pid          = {G:(DE-Juel1)FUEK414},
      shelfmark    = {Physics, Condensed Matter},
      typ          = {PUB:(DE-HGF)16},
      UT           = {WOS:000252862900127},
      doi          = {10.1103/PhysRevB.77.035413},
      url          = {https://juser.fz-juelich.de/record/2772},
}