Picosecond measurements of the third order susceptibility tensor in liquids

Abstract Single frequency Jamin interferometry is used for observation of non-linear susceptibility tensor measurements in the picosecond range (25 ps). At low density, when avoiding the polarization state instabilities, the displacement of the fringes leads to the measurement of two components of the nonlinear susceptibility tensor. It is shown that Xxyyx (ω = ω + ω - ω) decreases when the pulse duration is reduced, whereas Xxxxx (ω = ω + ω - ω) remains constant. This is interpreted by the difference between the orientational and vibrational molecular contributions.