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Identification of inhomogenous optical absorptive response by chaotic photonic signals in Au nanoparticles

机译:金纳米颗粒中混沌光子信号的非均质光吸收响应识别

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摘要

A chaotic circuit allows us to identify with a high sensitivity the optical absorption associated with a highly transparent sample with Au nanoparticles embedded in a TiO_2 thin film prepared by a sol-gel method. The measurements are based on a comparison of the correlation between a controlled optical irradiance that propagates through different zones of the sample. Nanosecond nonlinear optical measurements were obtained by monitoring the transmittance and the amplitude modification for the vectorial components of the electric fields in a two-wave mixing interaction. In addition, we theoretically study chaotic physical behavior exhibited by optical signals under nonlinear optical absorption. Our numerical results point out that small intensity fluctuations related to excitations of the absorptive nonlinearity can be described using a simple fractal model. Potential applications for developing sensors and instrumentation of the optical response of advanced materials are contemplated.
机译:混沌电路使我们能够以高灵敏度识别与高度透明的样品相关的光吸收,该样品的金纳米颗粒嵌入通过溶胶-凝胶法制备的TiO_2薄膜中。这些测量基于传播通过样品不同区域的受控光辐照度之间的相关性比较。通过监视两波混合相互作用中电场矢量分量的透射率和幅度修改来获得纳秒非线性光学测量值。另外,我们在理论上研究了非线性光吸收下光信号表现出的混沌物理行为。我们的数值结果指出,可以使用简单的分形模型来描述与吸收性非线性激发有关的小强度波动。设想了用于开发传感器和对先进材料的光学响应进行检测的潜在应用。

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