首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Robust determination of the anisotropic polarizability of nanoparticles using coherent confocal microscopy
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Robust determination of the anisotropic polarizability of nanoparticles using coherent confocal microscopy

机译:相干共聚焦显微镜可靠地测定纳米粒子的各向异性极化率

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摘要

A coherent confocal microscope is proposed as a means to fully characterize the elastic scattering properties of a nanoparticle as a function of wavelength. Using a high numerical aperture lens, two-dimensional scanning, and a simple vector-beam shaper, the rank-2 polarizability tensor is estimated from a single confocal image. A method for computationally efficient data processing is described, and numerical simulations show that this algorithm is robust to noise and uncertainty in the focal plane position. The proposed method is a generalization of techniques that provide an estimate of a limited set of scattering parameters, such as a single orientation angle for rodlike particles. The measurement of the polarizability obviates the need for a priori assumptions about the nanoparticle.
机译:提出了一种相干共聚焦显微镜,作为完全表征纳米粒子的弹性散射特性随波长变化的一种手段。使用高数值孔径透镜,二维扫描和简单的矢量束整形器,可从单个共聚焦图像估计2级极化率张量。描述了一种计算有效的数据处理方法,数值模拟表明该算法对焦平面位置的噪声和不确定性具有鲁棒性。所提出的方法是对技术的概括,该技术提供了有限的一组散射参数(例如,棒状颗粒的单个定向角)的估计值。极化率的测量消除了对纳米颗粒的先验假设的需要。

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