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Volumn 78, Issue 3, 2008, Pages

Manipulating quantum-well states by surface alloying: Pb on ultrathin Ag films

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EID: 46749084664     PISSN: 10980121     EISSN: 1550235X     Source Type: Journal    
DOI: 10.1103/PhysRevB.78.035408     Document Type: Article
Times cited : (14)

References (43)
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    • As reported in Ref., the surface states and QWSs are not affected by this annealing for the clean Ag(111) films.
    • As reported in Ref., the surface states and QWSs are not affected by this annealing for the clean Ag(111) films.
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    • Although the Pb deposition will increase the film thickness by 1/3 ML, we have basically neglected this effect in the analyses because the film thickness itself already has uncertainties that are reflected in the error bars in Figs. 2 2. We believe that the basic physical picture will not be altered even if the film thickness may not be precise.
    • Although the Pb deposition will increase the film thickness by 1/3 ML, we have basically neglected this effect in the analyses because the film thickness itself already has uncertainties that are reflected in the error bars in Figs. 2 2. We believe that the basic physical picture will not be altered even if the film thickness may not be precise.
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    • The QWSs observed at off-normal in Refs. can generally be considered as an initial-state effect because the periodicity comes from the film/substrate interface and it is unlikely that photoemitted electrons will feel this potential at the interface when they go out into the vacuum.
    • The QWSs observed at off-normal in Refs. can generally be considered as an initial-state effect because the periodicity comes from the film/substrate interface and it is unlikely that photoemitted electrons will feel this potential at the interface when they go out into the vacuum.


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