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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Optofluidic and strain measurements induced by polarization-resolved nanosecond pulses in gold-based nanofluids
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Optofluidic and strain measurements induced by polarization-resolved nanosecond pulses in gold-based nanofluids

机译:通过偏振分离的纳秒脉冲在金基纳米流体中诱导的优化流体和应变测量

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摘要

The influence of an optical fringe patterns on the viscoelastic properties exhibited by Au nanofluids samples was evaluated. A sensitive interferometric technique for analyzing optofluidic effects in different samples was implemented. The assistance of the plasmonic characteristics in Au nanostructures allows measuring particular mechano-optical effects at 532 nm wavelength by a Fabry-Perot interferometer to explore multiaxial strains. A representative volume of the sample was studied to determine the stability and maximum viscoelastic properties exhibited by the nanostructures. A vectorial two-wave configuration allows controlling the maximum strain induced in the sample. The oscillating nature of the colloid was examined by using interferometric optical signals reflected from a remnant drop pending at the end of an optical fiber. Nanosecond pulses were used to induce inelastic optofluidic effects. The mechanical parameters were approximated by a nonlinear second order system activated by a Dirac delta functions.
机译:评价了光学条纹图案对Au纳米流体样品表现出的粘弹性的影响。实施了用于分析不同样品中的邻晶效应的敏感干涉技术。 Au纳米结构中等离子体特性的辅助允许通过法布里 - 珀罗干涉仪测量532nm波长的特定机械光学效应,以探索多轴菌株。研究了样品的代表体积,以确定纳米结构表现出的稳定性和最大粘弹性。矢量是两波形配置允许控制样品中引起的最大应变。通过使用从光纤末端的待损失衰退的干涉光学信号来检查胶体的振荡性质。纳秒脉冲用于诱导非弹性晶体流体效应。通过DIRAC DELTA功能激活的非线性二阶系统近似机械参数。

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