Kaiser T, Roll G, Schweiger G
Appl Opt. 1996 Oct 20;35(30):5918-24. doi: 10.1364/AO.35.005918.
Single optically levitated microparticles were investigated by Raman spectroscopy. The particles were composed of di-octyl-phthalate (DOP) and glycerol; these substances are not mixable and form a two-phase droplet. Measurements of the Raman spectrum confirm the formation of droplets containing both chemical species. The spectra show strong input and output structural resonances as expected. If the particle is in resonance, the field inside the particle is enhanced, and most of the inelastically scattered light is emitted from molecules close to the droplet rim. If the particle does not fulfill the resonance condition, the contribution of an individual molecule to the Raman scattering does not depend strongly on the radial position of this molecule. On this basis, the radial distribution of the two components inside the evaporating droplet was determined by time-dependent measurements of the Raman spectrum. Furthermore, elastic-light scattering and the evaporation characteristics of the particles were investigated.
通过拉曼光谱对单个光悬浮微粒进行了研究。这些微粒由邻苯二甲酸二辛酯(DOP)和甘油组成;这些物质不可混溶,形成了两相液滴。拉曼光谱测量证实了含有这两种化学物质的液滴的形成。光谱显示出如预期的强烈的输入和输出结构共振。如果微粒处于共振状态,微粒内部的场会增强,并且大部分非弹性散射光从靠近液滴边缘的分子发射出来。如果微粒不满足共振条件,单个分子对拉曼散射的贡献并不强烈依赖于该分子的径向位置。在此基础上,通过对拉曼光谱的时间相关测量确定了蒸发液滴内部两种成分的径向分布。此外,还研究了微粒的弹性光散射和蒸发特性。