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Quantification of nanoscale density fluctuations using electron microscopy: Light-localization properties of biological cells

机译:使用电子显微镜量化纳米级密度波动:生物细胞的光定位特性

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摘要

We report a study of the nanoscale mass-density fluctuations of heterogeneous optical dielectric media, including nanomaterials and biological cells, by quantifying their nanoscale light-localization properties. Transmission electron microscope images of the media are used to construct corresponding effective disordered optical lattices. Light-localization properties are studied by the statistical analysis of the inverse participation ratio (IPR) of the localized eigenfunctions of these optical lattices at the nanoscale. We validated IPR analysis using nanomaterials as models of disordered systems fabricated from dielectric nanoparticles. As an example, we then applied such analysis to distinguish between cells with different degrees of aggressive malignancy.
机译:我们通过量化其纳米级光定位特性,报告了对包括纳米材料和生物细胞在内的异质光学介电介质的纳米级质量密度波动的研究。介质的透射电子显微镜图像用于构建相应的有效无序光学晶格。通过对这些光学晶格的局部本征函数的反参与比(IPR)进行纳米级统计分析,研究了光的定位特性。我们验证了使用纳米材料作为由介电纳米颗粒制成的无序系统模型的IPR分析。例如,我们然后应用这种分析来区分具有不同程度的侵袭性恶性肿瘤的细胞。

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