论文标题
干涉散射的轴向分析可以准确测定纳米颗粒的大小
Axial Profiling of Interferometric Scattering Enables an Accurate Determination of Nanoparticle Size
论文作者
论文摘要
近年来,干涉散射(ISCAT)显微镜已经发生了重大发展。这是一种具有纳米定位精度的纳米纳米镜头对象的成像和跟踪无镜头标签的技术。基于ISCAT的当前光度法技术可以通过测量ISCAT对比度来定量纳米颗粒的大小进行定量估计,并已成功应用于小于雷利散射极限的纳米对象。在这里,我们提供了一种克服这种尺寸限制的替代方法。我们考虑了ISCAT对比度的轴向变化,并利用矢量点扩散函数模型来揭示散射偶极子的位置,因此,不限于散射器的大小,不限于雷利极限。我们发现,我们的技术可以准确地测量纯粹和非接触方式的球形介电纳米颗粒的大小。我们还测试了荧光纳米座(FND),并获得了FND颗粒大小的合理估计。加上FND的荧光测量,我们观察到荧光信号与FND的大小之间存在相关性。我们的结果表明,ISCAT对比的轴向模式为球形颗粒的大小提供了足够的信息。我们的方法使我们能够以纳米精度测量纳米颗粒的大小,超过雷利极限,从而使全能的全光纳米纳米纳米计量技术。
Interferometric scattering (iSCAT) microscopy has undergone significant development in recent years. It is a promising technique for imaging and tracking nanoscopic label-free objects with nanometer localization precision. The current iSCAT-based photometry technique allows quantitative estimation for the size of a nanoparticle by measuring iSCAT contrast and has been successfully applied to nano-objects smaller than the Rayleigh scattering limit. Here we provide an alternative method that overcomes such size limitations. We take into account the axial variation of iSCAT contrast and utilize a vectorial point spread function model to uncover the position of a scattering dipole and, consequently, the size of the scatterer, which is not limited to the Rayleigh limit. We found that our technique accurately measures the size of spherical dielectric nanoparticles in a purely optical and non-contact way. We also tested fluorescent nanodiamonds (fND) and obtained a reasonable estimate for the size of fND particles. Together with fluorescence measurement from fND, we observed a correlation between the fluorescent signal and the size of fND. Our results showed that the axial pattern of iSCAT contrast provides sufficient information for the size of spherical particles. Our method enables us to measure the size of nanoparticles from tens of nanometers and beyond the Rayleigh limit with nanometer precision, making a versatile all-optical nanometric technique.