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Optics Letters|October 27, 2009
Performance of Pyrromethene 580 and 597 in a commercial Nd:YAG-pumped dye-laser systemW P Partridge, N M Laurendeau, C C Johnson, et al.Optics Letters|December 19, 2007
Photon-counting technique for rapid fluorescence-decay measurementS D Pack, M W Renfro, G B King, et al.Applied Optics|November 2, 2010
Real-time acquisition of laser-induced fluorescence decaysT A Reichardt, M S Klassen, G B King, et al.Optics Letters|February 1, 1997
Time-series measurements of CH concentration in turbulent CH(4) / air flames by use of picosecond time-resolved laser-induced fluorescenceM W Renfro, M S Klassen, G B King, et al.Applied Optics|August 21, 2010
Measurements of atomic sodium in flames by asynchronous optical sampling: theory and experimentG J Fiechtner, G B King, N M Laurendeau, et al.Applied Optics|November 25, 2010
Experimental assessment of O(2) interferences on laser-induced fluorescence measurements of NO in high-pressure, lean premixed flames by use of narrow-band and broadband detectionW P Partridge, M S Klassen, D D Thomsen, et al.Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|October 13, 2007
Modeling and experimental verification of plasmas induced by high-power nanosecond laser-aluminum interactions in airB Wu, Y C Shin, H Pakhal, et al.Optics Letters|September 1, 2009
Two-photon-excited fluorescence measurement of hydrogen atoms in flamesR P Lucht, J T Salmon, G B King, et al.Optics Letters|September 15, 2009
Asynchronous optical sampling: a new combustion diagnostic for potential use in turbulent, high-pressure flamesR J Kneisler, F E Lytle, G J Fiechtner, et al.Applied Optics|May 22, 2010
Pump/probe method for fast analysis of visible spectral signatures utilizing asynchronous optical samplingP A Elzinga, R J Kneisler, F E Lytle, et al.Pageof 4