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Applied Spectroscopy|April 20, 2016
Minute Concentration Measurements of Simple Hydrocarbon Species Using Supercontinuum Laser Absorption SpectroscopyJihyung Yoo, Nicholas Traina, Michael Halloran, et al.Applied Optics|October 17, 2014
Continuous hydroxyl radical planar laser imaging at 50 kHz repetition rateStephen Hammack, Campbell Carter, Clemens Wuensche, et al.Applied Optics|December 25, 2012
Nitric-oxide planar laser-induced fluorescence at 10 kHz in a seeded flow, a plasma discharge, and a flameStephen D Hammack, Campbell D Carter, James R Gord, et al.Applied Optics|June 25, 2002
Strategies for laser-induced fluorescence detection of nitric oxide in high-pressure flames. I. A-X(0,0) excitationWolfgang G Bessler, Christof Schulz, Tonghun Lee, et al.Applied Optics|April 29, 2003
Strategies for laser-induced fluorescence detection of nitric oxide in high-pressure flames. II. A-X(0,1) excitationWolfgang G Bessler, Christof Schulz, Tonghun Lee, et al.Applied Optics|November 8, 2005
Quantitative temperature measurements in high-pressure flames with multiline NO-LIF thermometryTonghun Lee, Wolfgang G Bessler, Helmut Kronemayer, et al.The Review of Scientific Instruments|June 3, 2009
Compact microwave re-entrant cavity applicator for plasma-assisted combustionKadek W Hemawan, Indrek S Wichman, Tonghun Lee, et al.Applied Optics|September 4, 2003
Strategies for laser-induced fluorescence detection of nitric oxide in high-pressure flames. III. Comparison of A-X excitation schemesWolfgang G Bessler, Christof Schulz, Tonghun Lee, et al.Data in Brief|December 30, 2022
Experimental data from gas burner fires in residential structure with HVAC systemCraig Weinschenk, Shruti Ghanekar, Keith Stakes, et al.Applied Optics|July 14, 2016
Comparison of 2D and 3D flame topography measured by planar laser-induced fluorescence and tomographic chemiluminescenceLin Ma, Yue Wu, Wenjiang Xu, et al.Pageof 2