Spin-resolved photoemission from submonolayer Ag on Si(111)

Vogt B, Schmiedeskamp B, Heinzmann U (1990)
Physical Review B: Condensed Matter and Materials Physics 42(14): 9267-9270.

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Vogt B, Schmiedeskamp B, Heinzmann U. Spin-resolved photoemission from submonolayer Ag on Si(111). Physical Review B: Condensed Matter and Materials Physics. 1990;42(14):9267-9270.
Vogt, B., Schmiedeskamp, B., & Heinzmann, U. (1990). Spin-resolved photoemission from submonolayer Ag on Si(111). Physical Review B: Condensed Matter and Materials Physics, 42(14), 9267-9270.
Vogt, B., Schmiedeskamp, B., and Heinzmann, U. (1990). Spin-resolved photoemission from submonolayer Ag on Si(111). Physical Review B: Condensed Matter and Materials Physics 42, 9267-9270.
Vogt, B., Schmiedeskamp, B., & Heinzmann, U., 1990. Spin-resolved photoemission from submonolayer Ag on Si(111). Physical Review B: Condensed Matter and Materials Physics, 42(14), p 9267-9270.
B. Vogt, B. Schmiedeskamp, and U. Heinzmann, “Spin-resolved photoemission from submonolayer Ag on Si(111)”, Physical Review B: Condensed Matter and Materials Physics, vol. 42, 1990, pp. 9267-9270.
Vogt, B., Schmiedeskamp, B., Heinzmann, U.: Spin-resolved photoemission from submonolayer Ag on Si(111). Physical Review B: Condensed Matter and Materials Physics. 42, 9267-9270 (1990).
Vogt, B., Schmiedeskamp, B., and Heinzmann, Ulrich. “Spin-resolved photoemission from submonolayer Ag on Si(111)”. Physical Review B: Condensed Matter and Materials Physics 42.14 (1990): 9267-9270.
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Atomic structure of the Si(111)( sqrt 3 x sqrt 3 )R30 degrees-Ag surface.
Jia JF, Zhao RG, Yang WS., Phys. Rev., B Condens. Matter 48(24), 1993
PMID: 10008450

31 References

Data provided by Europe PubMed Central.

Study of Ag/Si(111) submonolayer interfaceI. Electronic structure by angle-resolved UPS
YOKOTSUKA, Surface Science 127(1), 1983
Cohesive energy of the two-dimensional Si(111)3 × 1 Ag and Si(111)√3-R(30°)Ag phases of the Silver (deposit)-silicon(111) (substrate) system
LELAY, Surface Science 72(2), 1978
Investigation of the initial stages of growth of Ag films on Si(111)7 × 7 by a combination of LEED, AES, and UPS
WEHKING, Surface Science 71(2), 1978
A structure analysis of Ag-adsorbed Si(111) surface by LEED/CMTA
YASUSHI, Surface Science 114(1), 1982
Initial growth process and surface structure of Ag on Si(111) studied by low-energy Ion-Scattering Spectroscopy (ISS) and LEED-AES
SAITOH, Surface Science 112(3), 1981
Physics and electronics of the noble-metal/elemental-semiconductor interface formation: A status report
LELAY, Surface Science 132(1-3), 1983

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