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Angularly-resolved elastic light scattering of micro-particles.

机译:微粒的角分辨弹性光散射。

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摘要

From microbiology to astrophysics, the scientific community has long embraced elastic light scattering from small particles as a diagnostic tool. Elastic light scattering has an extremely large scattering cross-section, allowing for single particle interrogation. This is critical in applications where trace amounts of suspect particles are to be detected in a diverse background of natural aerosols. By angularly-resolving the elastically scattered light, features can be detected in these patterns that are sensitive to a particle's morphology (shape, size, internal structure, and composition).; An apparatus to collect LA TAOS (Large-Angle Two-dimensional Angular Optical Scattering) patterns from single particles in-situ and in real-time was designed and constructed. The setup utilizes a cross-beam trigger system to minimize the effects of the aberration coma stemming from the main collection optic, an ellipsoidal mirror. LA TAOS patterns of ambient aerosols were collected and analyzed. Approximately 15% of the ambient aerosol had a sphere-like shape. The refractive index of these spheres was estimated by curve-fitting to Lorenz-Mie theory. In addition, the island features prevalent in the LA TAOS pattern were analyzed. Metrics generated from these were used to get partial discrimination between clusters of Bacillus subtilis spores (a simulant for anthrax) and aerosol particles found in the ambient atmosphere. A novel experimental setup for collecting simultaneously LA TAOS patterns at two wavelengths in the mid-infrared was also implemented. With this setup, the relative strength of single-particle absorption could be discerned at the two illuminating wavelengths.
机译:从微生物学到天体物理学,科学界一直以来都将小颗粒的弹性光散射作为诊断工具。弹性光散射具有极大的散射横截面,允许进行单粒子询问。这对于在多种天然气溶胶背景下要检测痕量可疑颗粒的应用至关重要。通过角度解析弹性散射光,可以检测出这些模式中对粒子形态(形状,大小,内部结构和组成)敏感的特征。设计并构造了一种从原位实时地从单个粒子收集LA TAOS(大角度二维角光学散射)图案的设备。该设置采用了一个横光束触发系统,以最大程度地减少主要收集光学器件(椭球镜)产生的像差昏迷的影响。收集并分析环境气溶胶的LA TAOS模式。大约15%的周围气溶胶呈球形。这些球的折射率是通过曲线拟合到Lorenz-Mie理论估算的。此外,分析了LA TAOS模式中普遍存在的岛状特征。由此产生的度量用于部分区分枯草芽孢杆菌孢子(炭疽的模拟物)和周围大气中的气溶胶颗粒。还实现了一种新颖的实验装置,用于同时收集中红外两个波长的LA TAOS图案。通过这种设置,可以在两个照明波长下分辨出单粒子吸收的相对强度。

著录项

  • 作者

    Aptowicz, Kevin B.;

  • 作者单位

    Yale University.;

  • 授予单位 Yale University.;
  • 学科 Physics Optics.; Physics Atmospheric Science.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 108 p.
  • 总页数 108
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;大气科学(气象学);
  • 关键词

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