Abstract
The spectral structure of backward stimulated scattering from a 10 cm-long CS2-liquid cell is investigated by using Q-switched 10-ns and 532-nm laser pulses with different spectral linewidths. Under a narrow spectral line (∼0.1 cm-1) pump condition, very strong sharp lines near the pump wavelength (λ0) position and the first-order stimulated Raman scattering (λs1) position can be observed. However, under a wide line (≈ 1 cm-1) pump condition, only a strong and superbroadening spectral band can be observed mainly in the red-shift side of the pump wavelength. The different spectral features under these two conditions can be explained by a competition between stimulated Brillouin, Raman, and Rayleigh-Kerr scattering. Under both pump conditions, the broadening spectral distributions are not consistent with the predictions given by stimulated Rayleigh-wing scattering theories, but can be interpreted well utilizing the theoretical model of stimulated Rayleigh-Kerr scattering.
| Original language | English |
|---|---|
| Pages (from-to) | 850-856 |
| Number of pages | 7 |
| Journal | Journal of Experimental and Theoretical Physics |
| Volume | 85 |
| Issue number | 5 |
| DOIs | |
| State | Published - Nov 1997 |
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