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Updated: Mar 19, 2026

Ultrafast Time-resolved Near-IR Stimulated Raman Measurements of Functional π-conjugate Systems
Published on: February 10, 2020
One-dimensional time-resolved single-shot femtosecond coherent anti-Stokes Raman scattering thermometry in reacting
Abstract:
Time-resolved thermometry is vital for quantitative characterization of reacting turbulent flows but remains largely limited to point measurements, making higher-dimensional approaches attractive for capturing spatiotemporal thermal gradients. In this work, a one-dimensional chirped-probe pulse coherent anti-Stokes Raman scattering (CARS) instrument has been developed for gas-phase thermometry. Calibration and characterization of the instrument are detailed, and its capability is demonstrated through measurements in a laboratory flame. The ro-vibrational transitions of N2 are targeted in a uniform temperature flow field to calibrate the instrument and extract necessary laser parameters. The best-fit modeled laser parameters are examined in detail. Variations in laser parameters along the measurement line are captured and show dependence on non-uniform beam propagation and probe volume number density. After calibration, the instrument is successfully applied to a thermal gradient generated with a cooled-wall located perpendicular to the flow of the burner combustion products.
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