Pump—probe detection of optical nonlinearity in water-in-oil microemulsion

L. Vicari
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引用次数: 24

Abstract

Abstract Nonlinear optical effects in a water-sodium bis-diethylsulphosuccinate-decane microemulsion near the percolation line and far from critical points are reported and experimentally studied. We use a pump-probe configuration: a probe red Gaussian beam from a He-Ne laser is focused by a converging lens. The Gaussian-shaped TEM00 mode of an Ar+ laser is focused behind a thin film of microemulsion that is located behind the focal plane of the probe. Observation of the temporal behaviour of the detected signal allows one to distinguish a fast negative nonlinear optical effect, attributed to thermal blooming by a slow positive nonlinear optical effect attributed to mass diffusion due to the Soret effect and electrostriction. Maximum nonlinearity is observed for parallel polarizations of the pump and probe beams. Turning off the pump beam, the thermal profile and consequent nonlinear effect disappear. The existence of the concentration profile and of the consequent converging lens effect is clearly detected by the probe beam as well as its slow erasure by thermal diffusion.
油包水微乳液光学非线性的泵-探针检测
摘要报道并实验研究了水-二乙基磺丁二酸钠-癸烷微乳液在渗流线附近和远离临界点处的非线性光学效应。我们使用泵浦-探针结构:从氦氖激光器发出的探测红色高斯光束被会聚透镜聚焦。Ar+激光器的高斯形TEM00模式聚焦在探针焦平面后的微乳液薄膜后。通过对探测信号的时间行为的观察,可以区分出由热晕引起的快速负非线性光学效应和由索雷特效应和电伸缩引起的质量扩散引起的缓慢正非线性光学效应。最大的非线性是观察到平行极化的泵浦和探头光束。关闭泵光束后,热剖面和由此产生的非线性效应消失。探针光束清楚地检测到浓度分布和由此产生的会聚透镜效应的存在,以及热扩散对其的缓慢消除。
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