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Topic Area: Surface Physics

Displaying records 41 to 50 of 136 records.
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41. The Chemisorption of Chlorosilanes and Chlorine on Si(111)7{multiply}7
Topic: Surface Physics
Published: 1/1/1990
Authors: Lloyd J. Whitman, S Joyce, J Yarmoff, F McFeeley, L Terminello
Abstract: The chemisorption of SiCl^d4^, Si^d2^Cl^d6^, and chlorine on Si(111)7x7 has been characterixed using soft X-ray photoemission with synchrotron radiation, thermal desorption spectroscopy, and Auger electron spectroscopy. SiCl^d4^ dissociatively chemi ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=620356

42. The Chemisorption of SiCl^d4^, Si^d2^Cl^d6^, and Chlorine on Si(111) 7{multiply}7
Topic: Surface Physics
Published: 1/1/1990
Authors: Lloyd J. Whitman, S Joyce, J Yarmoff, F McFeeley, L Terminello
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=620355

43. Theory of Spin Polarized Metastable Atom De-excitation Spectroscopy; Ni-He
Topic: Surface Physics
Published: 1/1/1990
Authors: David R. Penn, S Apell
Abstract: Metastable spin-polarized He* atoms incident on a Ni surface undergo deexcitation in a process which yields electrons from the Ni. The number produced is observed to depend on the relative spin of the Ni and the He^u*^ atoms. The normalized differenc ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=620332

44. Dependence of inelastic electron mean free paths on electron energy and material
Topic: Surface Physics
Published: 5/1/1988
Authors: Shigeo Tanuma, Cedric John Powell, David R. Penn
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=620311

45. Calculations of Electron Inelastic Mean Free Paths for 31 Materials
Topic: Surface Physics
Published: 1/1/1988
Authors: Shigeo Tanuma, Cedric John Powell, David R. Penn
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=620319

46. Dependence of Inelastic Electron Mean Free Paths on Electron Energy and Material
Topic: Surface Physics
Published: 1/1/1987
Authors: Shigeo Tanuma, Cedric John Powell, David R. Penn
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=620324

47. Electron Mean-Free-Path Calculations Using a Model Dielectric Function
Topic: Surface Physics
Published: 1/1/1987
Author: David R. Penn
Abstract: The inelastic electron mean free path as a function of energy is calculated for Cu, Ag, Au, and Al. The calculations are based on a model dielectric function {epsilon}(q,w), which is obtained from a modification of the statistical approximation. In ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=620280

48. A General Expression for the Coulomb Interaction in the Presence of a Surface
Topic: Surface Physics
Published: 1/1/1986
Authors: S Apell, David R. Penn
Abstract: A general expression is presented for the Coulomb interaction between two test charges in the presence of an interface. The cases of planar and spherical geometry are considered. The potential is given for the two test particles outside, inside, or ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=620274

49. Scanning Tunneling Microscopy Applied to Optical Surfaces
Topic: Surface Physics
Published: 1/1/1986
Authors: Robert A. Dragoset, R Young, Howard P. Layer, S Mielczarek, E Clayton Teague, Robert Celotta
Abstract: The technique of scanning tunneling microscopy has been applied to topographic mapping of two optical surfaces: a ruled grating replica and a diamond-turned gold mirror. We have demonstrated the ability of the scanning tunneling microscope to measure ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=620271

50. Direct Verification of Hydrogen Termination of the Semiconducting Diamond (111) Surface
Topic: Surface Physics
Published: 7/1/1982
Authors: B Waclawski, Daniel Thornton Pierce, Nils Swanson, Robert Celotta
Abstract: Low-energy, high-resolution electron energy loss spectroscopy has been used to identify the vibrational modes of hydrogen on the semiconducting diamond surface providing the first direct evidence that the (111) 1X1 surface is terminated by hydrogen. ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=620218



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