Greg O. Sitz
Affiliations: | Physics | University of Texas at Austin, Austin, Texas, U.S.A. |
Area:
Biostatistics Biology, Bioinformatics BiologyGoogle:
"Greg Sitz"Mean distance: (not calculated yet)
Children
Sign in to add traineeMarcia J. Isakson | grad student | 2002 | UT Austin |
Leah C. Shackman | grad student | 2004 | UT Austin |
Jonghyuk Kim | grad student | 2006 | UT Austin |
Arban Uka | grad student | 2009 | UT Austin |
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Publications
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Reilly C, Hutchison A, Sitz GO. (2021) Survival of rotational alignment in H scattering from Si(100). The Journal of Chemical Physics. 155: 174705 |
Kim J, Sitz GO. (2010) The sticking of H2(v = 1, J = 1) on Cu(100) measured using laser-induced thermal desorption Molecular Physics. 108: 1027-1032 |
Sitz GO. (2008) Chapter 6 Inelastic Scattering of Heavy Molecules from Surfaces Handbook of Surface Science. 3: 197-229 |
Luntz AC, Persson M, Sitz GO. (2006) Theoretical evidence for nonadiabatic vibrational deexcitation in H2(D2) state-to-state scattering from Cu(100). The Journal of Chemical Physics. 124: 91101 |
Luntz AC, Persson M, Sitz GO. (2006) Theoretical evidence for nonadiabatic vibrational deexcitation in H2 (D2) state-to-state scattering from Cu(100) Journal of Chemical Physics. 124 |
Shackman LC, Sitz GO. (2005) State-to-state scattering of D2 from Cu(100) and Pd(111). The Journal of Chemical Physics. 123: 64712 |
Shackman LC, Sitz GO. (2005) Rotationally inelastic scattering of HD from Cu(100) and Pd(111). The Journal of Chemical Physics. 122: 114702 |
Sitz GO. (2002) Gas surface interactions studied with state-prepared molecules Reports On Progress in Physics. 65: 1165-1193 |
Sitz GO, Mullins CB. (2002) Molecular dynamics simulations of the influence of surface temperature on the trapping of methane on iridium single-crystalline surfaces Journal of Physical Chemistry B. 106: 8349-8353 |
Reeves CT, Stiehl JD, Mullins CB, et al. (2001) Molecular dynamics simulations of the trapping of ethane on Si(100)-(2×1): Effect of rotational energy and surface temperature Journal of Vacuum Science and Technology, Part a: Vacuum, Surfaces and Films. 19: 1543-1548 |