Correlational switching between 3{times}1 and 6{times}1 surface reconstructions on Si(111) with submonolayer Ag adsorption

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Description

Electron correlations are strongly enhanced in low dimensional systems. Taking correlations as the dominant mechanism, we provide and explanation of the recently observed electrostatically enforced structural phase transition (3x1 to 6x1) on a Si(111) surface with sub-monolayer Ag adsorption.

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10 p.

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Kempa, K.; Broido, D.A. & Weitering, H.H. July 1, 1996.

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This article is part of the collection entitled: Office of Scientific & Technical Information Technical Reports and was provided by UNT Libraries Government Documents Department to Digital Library, a digital repository hosted by the UNT Libraries. More information about this article can be viewed below.

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  • Kempa, K.
  • Broido, D.A. Boston Coll., Chestnut Hill, MA (United States). Dept. of Physics
  • Weitering, H.H. Tennessee Univ., Knoxville, TN (United States). Dept. of Physics and Astronomy

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Description

Electron correlations are strongly enhanced in low dimensional systems. Taking correlations as the dominant mechanism, we provide and explanation of the recently observed electrostatically enforced structural phase transition (3x1 to 6x1) on a Si(111) surface with sub-monolayer Ag adsorption.

Physical Description

10 p.

Notes

OSTI as DE96014614

Source

  • Strongly correlated electron systems (SCES `96), Zurich (Switzerland), 19-22 Aug 1996

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  • Other: DE96014614
  • Report No.: CONF-9608119--4
  • Grant Number: AC05-96OR22464
  • Office of Scientific & Technical Information Report Number: 397133
  • Archival Resource Key: ark:/67531/metadc683985

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  • July 1, 1996

Added to The UNT Digital Library

  • July 25, 2015, 2:20 a.m.

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  • Jan. 21, 2016, 7:08 p.m.

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Kempa, K.; Broido, D.A. & Weitering, H.H. Correlational switching between 3{times}1 and 6{times}1 surface reconstructions on Si(111) with submonolayer Ag adsorption, article, July 1, 1996; Tennessee. (digital.library.unt.edu/ark:/67531/metadc683985/: accessed September 20, 2017), University of North Texas Libraries, Digital Library, digital.library.unt.edu; crediting UNT Libraries Government Documents Department.