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The nonlinear susceptibility of metal colloids due to light-induced motion of the constituent nanoparticles

机译:由于组成纳米粒子的光诱导运动,金属胶体的非线性磁化率

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The present work analyzes the light-induced motion of the metal colloidal nanoparticles, aggregated into small clusters (/spl lsim/ 10 monomers). Within the model of a viscous solvent the characteristic mechanical response time is found. The calculations in the approximation of the weakly-bound particles (that means, when the electromagnetic energy of the interacting induced dipole moments significantly exceeds the potentials of the other forces in colloidsteric, dispersion ones, etc.) show the value of the cubic nonlinearity to be /spl chi//sup (3)/ /spl sim/ 10/sup -10/ esu and more, at the typical response time of /spl sim/ 10/sup -10/ - 10/sup -9/ sec. Thus, the light-induced shift of the colloidal metal particles can produce a large optical nonlinearity of the colloids, at least for nanosecond light pulses.
机译:本工作分析了金属胶体纳米粒子的光诱导运动,这些金属胶体纳米粒子聚集成小簇(/ spl lsim / 10个单体)。在粘性溶剂模型中,可以找到特征性的机械响应时间。弱束缚粒子的近似计算(也就是说,当相互作用的感应偶极矩的电磁能显着超过胶体,分散等中的其他力的电势时)表明,是/ spl chi // sup(3)/ / spl sim / 10 / sup -10 / esu和更多,典型响应时间为/ spl sim / 10 / sup -10 /-10 / sup -9 /秒。因此,至少对于纳秒级的光脉冲,胶体金属颗粒的光诱导位移会产生较大的胶体光学非线性。

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