Erhard Rothe
Affiliations: | Wayne State University, Detroit, MI, United States |
Area:
Chemical Engineering, Polymer Chemistry, Materials Science EngineeringGoogle:
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Publications
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Gu Y, Rothe EW, Reck GP, et al. (2002) One-dimensional UV-Raman imaging of a jet-a-fueled aircraft combustor in a high temperature and pressure test cell: A feasibility study Combustion Science and Technology. 174: 199-215 |
Daily JW, Rothe EW. (1999) Effect of laser intensity and of lower-state rotational energy transfer upon temperature measurements made with laser-induced fluorescence Applied Physics B: Lasers and Optics. 68: 131-140 |
Rothe EW, Gu Y, Chryssostomou A, et al. (1998) Effect of laser intensity and of lower-state rotational energy transfer upon temperature measurements made with laser-induced predissociative fluorescence Applied Physics B: Lasers and Optics. 66: 251-258 |
Rothe EW, Gu Y. (1997) Effect of laser intensity upon density and temperature measurements made with laser-induced predissociative fluorescence Proceedings of Spie - the International Society For Optical Engineering. 3172: 464 |
Rothe EW, Gu YW, Reck GP. (1996) Laser-induced predissociative fluorescence: dynamics and polarization and the effect of lower-state rotational energy transfer on quantitative diagnostics. Applied Optics. 35: 934-47 |
Koch A, Voges H, Andresen P, et al. (1993) Planar imaging of a laboratory flame and of internal combustion in an automobile engine using UV rayleigh and fluorescence light Applied Physics B Photophysics and Laser Chemistry. 56: 177-184 |
Andresen P, Schlüter H, Wolff D, et al. (1992) Identification and imaging of OH (nu'' = O) and O(2) (nu'' = 6 or 7) in an automobile spark-ignition engine using a tunable KrF excimer laser. Applied Optics. 31: 7684-9 |
Andresen P, Meijer G, Schlüter H, et al. (1990) Fluorescence imaging inside an internal combustion engine using tunable excimer lasers. Applied Optics. 29: 2392-404 |
Andresen P, Meijer G, Schlüter H, et al. (1990) Fluorescence imaging inside an internal combustion engine using tunable excimer lasers Applied Optics. 29: 2392-2404 |