The Resource Electrical Resistivity of Thin Metal Films, by Peter Wißmann, Hans-Ulrich Finzel, (electronic resource)

Electrical Resistivity of Thin Metal Films, by Peter Wißmann, Hans-Ulrich Finzel, (electronic resource)

Label
Electrical Resistivity of Thin Metal Films
Title
Electrical Resistivity of Thin Metal Films
Statement of responsibility
by Peter Wißmann, Hans-Ulrich Finzel
Creator
Contributor
Author
Provider
Subject
Language
eng
Summary
The aim of the book is to give an actual survey on the resistivity of thin metal and semiconductor films interacting with gases. We discuss the influence of the substrate material and the annealing treatment of the films, presenting our experimental data as well as theoretical models to calculate the scattering cross section of the conduction electrons in the frame-work of the scattering hypothesis. Main emphasis is laid on the comparison of gold and silver films which exhibit nearly the same lattice structure but differ in their chemical activity. In conclusion, the most important quantity for the interpretation is the surface charging z while the correlation with the optical data or the frustrated IR vibrations seems the show a more material-specific character. Z can be calculated on the basis of the density functional formalism or the self-consistent field approximation using Mulliken’s population analysis
Member of
http://library.link/vocab/creatorName
Wissmann, Peter
Image bit depth
0
LC call number
QC173.45-173.458
Literary form
non fiction
http://library.link/vocab/relatedWorkOrContributorName
  • Finzel, Hans-Ulrich.
  • SpringerLink
Series statement
Springer Tracts in Modern Physics,
Series volume
223
http://library.link/vocab/subjectName
  • Physics
  • Condensed matter
  • Physics
  • Condensed Matter
Label
Electrical Resistivity of Thin Metal Films, by Peter Wißmann, Hans-Ulrich Finzel, (electronic resource)
Instantiates
Publication
Antecedent source
mixed
Carrier category
online resource
Carrier category code
cr
Carrier MARC source
rdacarrier
Color
not applicable
Content category
text
Content type code
txt
Content type MARC source
rdacontent
Contents
The Scattering Hypothesis -- The Effect of Annealing on the Electrical Resistivity of Thin Silver Films -- The Effect of Annealing on the Electrical Resistivity of Thin Gold Films -- The Interaction of Oxygen and Ethylene with Silver and Gold Films -- Other Adsorbates on Silver and Gold Films -- Further Selected Adsorption Systems -- Conclusions and Outlook
Dimensions
unknown
Extent
VII, 126 p. 110 illus. Also available online.
File format
multiple file formats
Form of item
electronic
Isbn
9783540484905
Level of compression
uncompressed
Media category
computer
Media MARC source
rdamedia
Media type code
c
Other control number
10.1007/3-540-48490-6
Other physical details
online resource.
Quality assurance targets
absent
Reformatting quality
access
Specific material designation
remote
System control number
(DE-He213)978-3-540-48490-5
Label
Electrical Resistivity of Thin Metal Films, by Peter Wißmann, Hans-Ulrich Finzel, (electronic resource)
Publication
Antecedent source
mixed
Carrier category
online resource
Carrier category code
cr
Carrier MARC source
rdacarrier
Color
not applicable
Content category
text
Content type code
txt
Content type MARC source
rdacontent
Contents
The Scattering Hypothesis -- The Effect of Annealing on the Electrical Resistivity of Thin Silver Films -- The Effect of Annealing on the Electrical Resistivity of Thin Gold Films -- The Interaction of Oxygen and Ethylene with Silver and Gold Films -- Other Adsorbates on Silver and Gold Films -- Further Selected Adsorption Systems -- Conclusions and Outlook
Dimensions
unknown
Extent
VII, 126 p. 110 illus. Also available online.
File format
multiple file formats
Form of item
electronic
Isbn
9783540484905
Level of compression
uncompressed
Media category
computer
Media MARC source
rdamedia
Media type code
c
Other control number
10.1007/3-540-48490-6
Other physical details
online resource.
Quality assurance targets
absent
Reformatting quality
access
Specific material designation
remote
System control number
(DE-He213)978-3-540-48490-5

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