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Elastic light scattering from nanoparticles by monochromatic vacuum-ultraviolet radiation

机译:单色真空-紫外线辐射从纳米粒子发出的弹性光散射

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Elastic light scattering is reported using monochromatic vacuum-ultraviolet radiation to study free, spherical silica nanoparticles prepared by approaches from colloidal chemistry, with diameters between 100 and 240 nm. The colloidal nanoparticles of defined size are transferred from an aqueous solution into the gas phase using a particle beam experiment. After focusing of the particle beam by an aerodynamic lens, the scattered light from monochromatic synchrotron radiation is measured. Angle-resolved elastically scattered light is detected, showing a strong forward-scattering component. Additional evidence for the detection of elastically scattered light comes from plotting the scattered light intensity as a function of the dimensionless parameter qR, where q is the magnitude of the scattering wave vector and R is the particle radius. This yields different power-law regimes that are assigned to scattering from the surface and the bulk of the nanoparticles. Furthermore, there is evidence for modulations in the scattered light intensity as a function of scattering angle, which is clearly distinguished from the forward-scattering component. The experimental results are compared to Mie scattering simulations for isolated particles, yielding general agreement with the experimental results. Deviations from Mie simulations are observed for samples consisting of significant amounts of aggregates. The present results indicate that the optical properties of free nanoparticles are sensitively probed by vacuum-ultraviolet radiation. (c) 2006 American Institute of Physics.
机译:据报道,使用单色真空-紫外线辐射可产生弹性光散射,以研究通过胶体化学方法制备的直径为100至240 nm的游离球形二氧化硅纳米颗粒。使用粒子束实验将确定尺寸的胶体纳米颗粒从水溶液转移到气相中。在通过空气动力学透镜聚焦粒子束之后,测量来自单色同步加速器辐射的散​​射光。检测到角度分辨的弹性散射光,显示出很强的前向散射分量。用于检测弹性散射光的其他证据来自于将散射光强度绘制为无量纲参数qR的函数,其中q是散射波矢量的大小,R是粒子半径。这产生了不同的幂律规律,其被分配给从纳米颗粒的表面和大部分的散射。此外,有证据表明散射光强度根据散射角进行调制,这与前向散射分量明显不同。将实验结果与Mie散射模拟的分离颗粒进行比较,得出与实验结果基本一致的结果。对于由大量聚集体组成的样品,观察到与Mie模拟的偏差。目前的结果表明,游离纳米颗粒的光学性质可通过真空-紫外线辐射灵敏地探测到。 (c)2006年美国物理研究所。

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