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Light scattering by ultrasonically-controlled small particles: system design, calibration, and measurement results

机译:通过超声控制的小颗粒光散射:系统设计,校准和测量结果

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We present the design of a novel scatterometer for precise measurement of the angular Mueller matrix profile of a mm- to μm-sized sample held in place by sound. The scatterometer comprises a tunable multimode Argon-krypton laser (with possibility to set 1 of the 12 wavelengths in visible range), linear polarizers, a reference photomultiplier tube (PMT) for monitoring the beam intensity, and a micro-PMT module mounted radially towards the sample at an adjustable radius. The measurement angle is controlled by a motor-driven rotation stage with an accuracy of 15'. The system is fully automated using LabVIEW, including the FPGA-based data acquisition and the instrument's user interface. The calibration protocol ensures accurate measurements by using a control sphere sample (diameter 3 mm, refractive index of 1.5) fixed first on a static holder followed by accurate multi-wavelength measurements of the same sample levitated ultrasonically. To demonstrate performance of the scatterometer, we conducted detailed measurements of light scattered by a particle derived from the Chelyabinsk meteorite, as well as planetary analogue materials. The measurements are the first of this kind, since they are obtained using controlled spectral angular scattering including linear polarization effects, for arbitrary shaped objects. Thus, our novel approach permits a non-destructive, disturbance-free measurement with control of the orientation and location of the scattering object.
机译:我们介绍了一种新型散射仪的设计,用于精确测量由声音保持在适当位置的mm-toμm尺寸样本的角果树矩阵分布。散射仪包括可调谐多模氩krypton激光器(具有可见范围中的12个波长中的1个,线性偏振器,用于监测光束强度的参考光电倍增管(PMT),以及径向安装的微PMT模块在可调节半径处的样品。测量角度由电动机驱动的旋转级控制,精度为15'。系统使用LabVIEW进行全自动化,包括基于FPGA的数据采集和仪器的用户界面。校准方案通过使用首先在静态支架上固定的控制球样品(直径3mm,1.5折射率为1.5),然后通过超声波悬浮的相同样品的精确多波长测量来确保精确测量。为了展示散射仪的性能,我们对由衍生自Chelyabinsk陨石的粒子散射的光进行详细测量,以及行星形式材料。测量是本文的第一个,因为它们是使用包括线性偏振效果的受控光谱角散射,以便是任意形状的物体。因此,我们的新方法允许无损,无扰动的测量,控制散射物体的方向和位置。

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