Effects of Virtual Electron Transitions between Image States on Electron Dynamics at Metal Surfaces
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概要
- 論文の詳細を見る
Electron dynamics in image states of metals are investigated by taking notice of the effects of virtual electron transitions between different image states, which are represented by off-diagonal elements of self-energy functions. Analytical formulae of both the diagonal and off-diagonal elements of the Green functions, which represent the electron densities of the image states and the probability of electron propagation between the image states, respectively, are obtained from Dyson's equations. The virtual electron transitions cause energy repulsion between the image states, and hence the decay of the electron densities can be accelerated or decelerated as compared with the decay rates given by the imaginary parts of the self-energies of the image states. Moreover, the virtual electron transitions can account for quantum beats exhibited in both the diagonal and off-diagonal elements of the Green functions. By numerical analysis, we show how the above effects are enhanced as the lifetimes of the image states become shorter.
- 社団法人日本物理学会の論文
- 2002-03-15
著者
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KASAI Hideaki
Department of Precision Science and Technology and Applied Physics, Osaka University
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Okiji A
Wakayama National Coll. Of Technol. Wakayama Jpn
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Okiji Ayao
Wakayama National College Of Technology
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Kasai Hideaki
Department Of Applied Physics Osaka University
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SAKAUE Mamoru
RIKEN (The Institute of Physical and Chemical Research)
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MUNAKATA Toshiaki
RIKEN (The Institute of Physical and Chemical Research)
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Kasai Hideaki
Department Of Applied Physics Faculty Of Engineering Osaka University
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Kasai Haruo
Department Of Electronics Chiba University
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Okiji Ayao
Department of Applied Physics, Osaka University
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