PACS numbers

78.30.Cp Liquids
  1. Ya.S. Bobovich “Recent progress in dynamical spectroscopy of Raman light scatteringSov. Phys. Usp. 35 (6) 481–505 (1992)
    33.20.Fb, 78.30.Cp, 78.30.Jw, 78.47.+p, 33.80.Be (all)
  2. E.M. Aver’yanov, M.A. Osipov “Errata: Effects of the local field of a light wave in the molecular optics of liquid crystals [Sov. Phys. Usp. 33, 365-384 (May 1990)]Sov. Phys. Usp. 33 (10) 880–880 (1990)
    61.30.Gd, 61.30.Dk, 78.30.Cp, 78.20.Ci (all)
  3. E.M. Aver’yanov, M.A. Osipov “Effects of the local field of a light wave in the molecular optics of liquid crystalsSov. Phys. Usp. 33 (5) 365–384 (1990)
    61.30.Gd, 61.30.Dk, 78.30.Cp, 78.20.Ci (all)
  4. I.L. Fabelinskii “Time-resolved spectroscopySov. Phys. Usp. 30 755–756 (1987)
    01.30.Vv, 78.47.+p, 78.30.Fs, 78.30.Cp (all)
  5. S.M. Arakelyan, G.A. Lyakhov, Yu.S. Chilingaryan “Nonlinear optics of liquid crystalsSov. Phys. Usp. 23 245–268 (1980)
    78.20.Dj, 78.30.Cp, 42.65.−k, 42.60.He (all)
  6. V.E. Pogorelov, A.I. Lizengevich et alVibrational relaxation in condensed mediaSov. Phys. Usp. 22 270–282 (1979)
    07.65.-b, 06.60.Jn, 78.30.Cp (all)
  7. V.L. Ginzburg “Line width in the spectrum of scattered lightSov. Phys. Usp. 15 114–120 (1972)
    78.35.+c, 71.36.+c, 78.30.Cp, 51.70.+f (all)
  8. R.V. Khokhlov “On nonlinear wave processesSov. Phys. Usp. 8 642–645 (1966)
    42.79.Sz, 42.65.Ky, 42.65.Yj, 42.79.Ci, 78.30.Cp (all)
  9. Ya.S. Bobovich “Modern technical means and methods of studying Raman spectraSov. Phys. Usp. 7 656–680 (1965)
    78.30.Cp, 78.20.Ci (all)
  10. V.L. Broude “Spectroscopic studies of benzeneSov. Phys. Usp. 4 584–606 (1962)
    61.66.Hq, 78.30.Cp, 64.70.Dv (all)
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