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- W1978253608 endingPage "2606" @default.
- W1978253608 startingPage "2598" @default.
- W1978253608 abstract "An intense, positive electric field applied normal to a metal surface can displace or even strip away the surface layer of atoms. These effects are studied for a jellium model (${r}_{s}$=4.20 a.u., surface layer thickness d=5.65 a.u.) via fully self-consistent calculations within the local-density approximation for exchange and correlation. From plots of surface energy versus displacement for several fields of interest, the critical field ${F}_{c}$ required to evaporate the rigid surface layer is found (1.8 V/Ar{}) and compared with the prediction (1.7 V/Ar{}) of a simple semiempirical formula based upon universal binding-energy curves. The calculations also reveal information about electronic-charge redistribution, electronic resonances which develop with increasing separation of the surface layer from the bulk, and various components of the surface-layer--bulk binding force. The jellium surface is compared with the real-metal surface Na(110) and with Al(111), which was investigated in earlier semi-self-consistent work." @default.
- W1978253608 created "2016-06-24" @default.
- W1978253608 creator A5014987686 @default.
- W1978253608 creator A5027780983 @default.
- W1978253608 date "1987-08-15" @default.
- W1978253608 modified "2023-09-27" @default.
- W1978253608 title "Theory of field evaporation of the surface layer in jellium and other metals" @default.
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- W1978253608 doi "https://doi.org/10.1103/physrevb.36.2598" @default.
- W1978253608 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/9943144" @default.
- W1978253608 hasPublicationYear "1987" @default.
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