Linewidth modelling of C2H2N2 mixtures tested by rotational CARS measurements

The acetylene–nitrogen system is investigated in a combined theoretical and experimental effort in view of its thermometry applications. Accurate values of the rotational Raman linewidths of acetylene are of crucial importance for the computation of spectra from rotational coherent anti‐Stokes Raman...

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Published inJournal of Raman spectroscopy Vol. 37; no. 6; pp. 647 - 654
Main Authors Buldyreva, J., Bonamy, J., Weikl, M. C., Beyrau, F., Seeger, T., Leipertz, A., Vestin, F., Afzelius, M., Bood, J., Bengtsson, P.-E.
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Published Chichester, UK John Wiley & Sons, Ltd 01.06.2006
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Abstract The acetylene–nitrogen system is investigated in a combined theoretical and experimental effort in view of its thermometry applications. Accurate values of the rotational Raman linewidths of acetylene are of crucial importance for the computation of spectra from rotational coherent anti‐Stokes Raman scattering (CARS) used for temperature and concentration evaluations. Since the direct measurements of these linewidths are not available, they are rigorously calculated by a semi‐classical Robert–Bonamy formalism employing exact trajectories. The computed linewidths are used as input parameters in the theoretical spectra simulation, which is also improved by the inclusion of an interbranch interference with coherent Stokes Raman scattering (CSRS). These theoretical spectra are used to evaluate the temperature from experimental CARS spectra of acetylene‐nitrogen mixtures recorded in the pressure range 0.1–0.6 MPa. The new linewidths (NLWs) and the CSRS interference inclusion result in a clear improvement of spectral fitting as well as in reasonable values of evaluated temperatures. Copyright © 2006 John Wiley & Sons, Ltd.
AbstractList The acetylene–nitrogen system is investigated in a combined theoretical and experimental effort in view of its thermometry applications. Accurate values of the rotational Raman linewidths of acetylene are of crucial importance for the computation of spectra from rotational coherent anti‐Stokes Raman scattering (CARS) used for temperature and concentration evaluations. Since the direct measurements of these linewidths are not available, they are rigorously calculated by a semi‐classical Robert–Bonamy formalism employing exact trajectories. The computed linewidths are used as input parameters in the theoretical spectra simulation, which is also improved by the inclusion of an interbranch interference with coherent Stokes Raman scattering (CSRS). These theoretical spectra are used to evaluate the temperature from experimental CARS spectra of acetylene‐nitrogen mixtures recorded in the pressure range 0.1–0.6 MPa. The new linewidths (NLWs) and the CSRS interference inclusion result in a clear improvement of spectral fitting as well as in reasonable values of evaluated temperatures. Copyright © 2006 John Wiley & Sons, Ltd.
The acetylene-nitrogen system is investigated in a combined theoretical and experimental effort in view of its thermometry applications. Accurate values of the rotational Raman linewidths of acetylene are of crucial importance for the computation of spectra from rotational coherent anti-Stokes Raman scattering (CARS) used for temperature and concentration evaluations. Since the direct measurements of these linewidths are not available, they are rigorously calculated by a semi-classical Robert-Bonamy formalism employing exact trajectories. The computed linewidths are used as input parameters in the theoretical spectra simulation, which is also improved by the inclusion of an interbranch interference with coherent Stokes Raman scattering (CSRS). These theoretical spectra are used to evaluate the temperature from experimental CARS spectra of acetylene-nitrogen mixtures recorded in the pressure range 0.1-0.6 MPa. The new linewidths (NLWs) and the CSRS interference inclusion result in a clear improvement of spectral fitting as well as in reasonable values of evaluated temperatures.
Author Bonamy, J.
Beyrau, F.
Seeger, T.
Vestin, F.
Leipertz, A.
Afzelius, M.
Weikl, M. C.
Buldyreva, J.
Bood, J.
Bengtsson, P.-E.
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Snippet The acetylene–nitrogen system is investigated in a combined theoretical and experimental effort in view of its thermometry applications. Accurate values of the...
The acetylene-nitrogen system is investigated in a combined theoretical and experimental effort in view of its thermometry applications. Accurate values of the...
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SubjectTerms acetylene-nitrogen mixture
Cars
Coherent scattering
collisional linewidth
Inclusions
interbranch interference
Mathematical models
Raman scattering
Rotational
rotational CARS thermometry
semi-classical computation
Spectra
Spectral lines
temperature evaluation
Title Linewidth modelling of C2H2N2 mixtures tested by rotational CARS measurements
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