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Flinders Academic Commons >
Browsing by Author Campbell, Laurence
Showing results 1 to 20 of 33
| Preview | Issue Date | Title | Author(s) | | 2008 | Application of the BEf-scaling approach to
electron impact excitation of diople-allowed electronic states in molecules | Campbell, Laurence; Brunger, Michael James; Thorn, Penny Anne; Kato, H; Kawahara, H; Hoshino, M; Tanaka, Hiroshi; Kim, Y.-K. |
| 2010 | Benchmarking electronic-state excitation cross sections for electron-N2 collisions | Kato, H; Suzuki, Daisuke; Ohkawa, Mizuha; Hoshino, M; Tanaka, Hiroshi; Campbell, Laurence; Brunger, Michael James |
| 2008 | Carbon dioxide electron cooling rates in the
atmospheres of Mars and Venus | Campbell, Laurence; Brunger, Michael James; Rescigno, T N |
| 2007 | Closed-form expressions for state-to-state
charge-transfer differential cross sections in a modified Faddeev three-body
approach | Ghanbari Adivi, E; Brunger, Michael James; Bolorizadeh, Mohammad Agha; Campbell, Laurence |
| 2009 | Cross sections for electron impact excitation of the C 1 and D 1+ electronic states in N2O | Kawahara, H; Suzuki, Daisuke; Kato, H; Hoshino, M; Tanaka, Hiroshi; Ingolfsson, Oddur; Campbell, Laurence; Brunger, Michael James |
| 2007 | Data Needs and Modeling of the Upper
Atmosphere | Brunger, Michael James; Campbell, Laurence |
| 2005 | Electron Collisions in our Atmosphere - How the
Microscopic Drives the Macroscopic | Buckman, Stephen J; Brunger, Michael James; Campbell, Laurence; Jelisavcic, M; Petrovic, Z L |
| 2003 | Electron collisions with ethylene | Tanaka, Hiroshi; Campbell, Laurence; Brunger, Michael James; Buckman, Stephen J; Jelisavcic, M; Kitajima, M; Lower, J; Panajotovic, R |
| 4-Feb-2008 | Electron cooling by carbon monoxide in the atmospheres of Mars and Venus | Campbell, Laurence; Brunger, Michael James |
| 2008 | Electron cooling by carbon monoxide in the
atmospheres of Mars and Venus | Campbell, Laurence; Brunger, Michael James |
| 2006 | Electron-driven excitation of O2 under night-time
auroral conditions: excited state densities and band emissions | Jones, Darryl Bruce; Campbell, Laurence; Bottema, Murk Jan; Teubner, Peter John; Cartwright, D C; Newell, W R; Brunger, Michael James |
| 2006 | Electron driven processes in atmospheric
behaviour | Campbell, Laurence; Brunger, Michael James; Teubner, Peter John |
| 2011 | Electron excitation of the Schumann–Runge continuum, longest band, and second band electronic states in O2 | Suzuki, Daisuke; Kato, H; Ohkawa, Mizuha; Anzai, Kazutoshi; Tanaka, Hiroshi; Limao-Vieira, P; Campbell, Laurence; Brunger, Michael James |
| 2007 | Electron impact contribution to infrared NO
emissions in auroral conditions | Brunger, Michael James; Campbell, Laurence |
| 2008 | Electron-impact excitation of the B1[Sigma]+u and
C1[Pi]u electronic states of H2 | Brunger, Michael James; Kato, H; Kawahara, H; Hoshino, M; Tanaka, Hiroshi; Campbell, Laurence |
| 2003 | An electron momentum spectroscopy and density
functional theory study of the outer valence electronic structure of
stella-2,6-dione | Winkler, D A; Nixon, Kate Louise; Weigold, Erich; Wang, F; Maddern, Todd Michael; Campbell, Laurence; Brunger, Michael James; Gleiter, R; Loeb, P |
| 2008 | Excitation of the lowest lying 3B1, 1B1, 3A2, 1A2,
3A1 and 1A1 electronic states in water by 15 eV electrons | Brunger, Michael James; Thorn, Penny Anne; Campbell, Laurence; Diakomichalis, Nicole; Kato, H; Kawahara, H; Hoshino, M; Tanaka, Hiroshi; Kim, Y.-K. |
| 2004 | Infrared Auroral Emissions Driven by Resonant
Electron Impact Excitation of NO molecules | Campbell, Laurence; Brunger, Michael James; Buckman, Stephen J; Jelisavcic, M; Petrovic, Z L; Panajotovic, R |
| 2008 | Integral cross sections for electron impact
excitation of the 1[Sigma]+u and 1[Pi]u electronic states in CO2 | Kawahara, H; Kato, H; Hoshino, M; Tanaka, Hiroshi; Campbell, Laurence; Brunger, Michael James |
| 2008 | Investigating the sensitivity of nitric oxide
infrared emissions to electron impact | Campbell, Laurence; Brunger, Michael James; Allan, Roger M |
Showing results 1 to 20 of 33
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