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Kvantovaya Elektronika, 2006 Volume 36, Number 7, Pages 687–690 (Mi qe13179)

SPECIAL ISSUE DEVOTED TO THE 90TH ANNIVERSARY OF A.M. PROKHOROV

High-resolution line-shape spectroscopy during a laser pulse based on Dual-Broad-Band–CARS interferometry

K. A. Vereshchagina, A. K. Vereschagina, W. Claussb, D. N. Klimenkob, M. Oschwaldb, V. V. Smirnova, O. M. Stel'makha, V. I. Fabelinskyĭa

a Prokhorov General Physics Institute of the Russian Academy of Sciences, Moscow
b German Aerospace Research Centre, Germany

Abstract: A high-resolution spectroscopic method is developed for recording Raman spectra of molecular transitions in transient objects during a laser pulse with a resolution of ~0.1 cm-1. The method is based on CARS spectroscopy using a Fabry–Perot interferometer for spectral analysis of the CARS signal and detecting a circular interferometric pattern on a two-dimensional multichannel photodetector. It is shown that the use of the Dual-Broad-Band–CARS configuration to obtain the CARS process provides the efficient averaging of the spectral–amplitude noise of the CARS signal generated by a laser pulse and, in combination with the angular integration of the two-dimensional interference pattern, considerably improves the quality of interferograms. The method was tested upon diagnostics of the transient oxygen–hydrogen flame where information on the shapes of spectral lines of the Q-branch of hydrogen molecules required for measuring temperature was simultaneously obtained and used.

PACS: 42.62.Fi, 42.65.Dr

Received: 03.04.2006


 English version:
Quantum Electronics, 2006, 36:7, 687–690

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