Hitzelhammer Felix, Dostálová Anežka, Zykov Ilia, Platzer Barbara, Conrad-Billroth Clara, Juffmann Thomas, Hohenester Ulrich
Institute of Physics, University of Graz Universitätsplatz 5, 8010 Graz, Austria.
University of Vienna, Faculty of Physics, VCQ, 1090 Vienna, Austria.
ACS Photonics. 2024 Jun 17;11(7):2745-2756. doi: 10.1021/acsphotonics.4c00621. eCollection 2024 Jul 17.
Interferometric scattering microscopy is a powerful technique that enables various applications, such as mass photometry and particle tracking. Here, we present a numerical toolbox to simulate images obtained in interferometric scattering, coherent bright-field, and dark-field microscopies. The scattered fields are calculated using a boundary element method, facilitating the simulation of arbitrary sample geometries and substrate layer structures. A fully vectorial model is used for simulating the imaging setup. We demonstrate excellent agreement between our simulations and experiments for different shapes of scatterers and excitation angles. Notably, for angles near the Brewster angle, we observe a contrast enhancement which may be beneficial for nanosensing applications. The software is available as a matlab toolbox.
干涉散射显微镜是一种强大的技术,可实现多种应用,如质量光度测量和粒子跟踪。在此,我们展示了一个数值工具箱,用于模拟在干涉散射、相干明场和暗场显微镜中获得的图像。使用边界元法计算散射场,便于模拟任意的样品几何形状和衬底层结构。使用全矢量模型来模拟成像设置。对于不同形状的散射体和激发角度,我们的模拟结果与实验结果显示出极佳的一致性。值得注意的是,对于接近布儒斯特角的角度,我们观察到对比度增强,这可能对纳米传感应用有益。该软件可作为一个Matlab工具箱获取。