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Applied Optics|November 25, 2010
Atmospheric thermometry for metallic surfaces by laser-induced second-harmonic generationN R Pedanekar, H Yin, N M LaurendeauApplied Optics|November 2, 2010
Rate-equation model for quantitative concentration measurements in flames with picosecond pump-probe absorption spectroscopyG J Fiechtner, G B King, N M LaurendeauApplied Optics|March 18, 2010
Balanced cross-rate model for saturated molecular fluorescence in flames using a nanosecond pulse length laserR P Lucht, D W Sweeney, N M LaurendeauApplied Optics|June 10, 2010
Flame temperature measurements using the anomalous fluorescence of pyreneD L Peterson, F E Lytle, N M LaurendeauApplied Optics|August 20, 2010
Saturated fluorescence measurements of the hydroxyl radical in laminar high-pressure C(2)H(6)/O(2)/N(2) flamesC D Carter, G B King, N M LaurendeauApplied Optics|May 20, 1997
Background corrections for laser-induced-fluorescence measurements of nitric oxide in lean, high-pressure, premixed methane flamesD D Thomsen, F F Kuligowski, N M LaurendeauApplied Optics|November 2, 2010
Quantitative concentration measurements of atomic sodium in an atmospheric hydrocarbon flame with asynchronous optical samplingG J Fiechtner, G B King, N M LaurendeauApplied Optics|March 8, 2008
Quantitative hydroxyl concentration time-series measurements in turbulent nonpremixed flamesM W Renfro, G B King, N M LaurendeauApplied Optics|November 19, 2010
Measurements of hydroxyl concentrations and lifetimes in laminar flames using picosecond time-resolved laser-induced fluorescenceT A Reichardt, M S Klassen, G B King, et al.Applied Optics|June 5, 2010
Feasibility of hydroxyl concentration measurements by laser-saturated fluorescence in high-pressure flamesC D Carter, J T Salmon, G B King, et al.Pageof 4