English

Analysis of superresolution via 3D structured illumination intensity correlation microscopy

Optics 2018-10-08 v2

Abstract

Intensity correlation microscopy (ICM), which is prominently known through antibunching microscopy or super-resolution optical fluctuation imaging (SOFI), provides superresolution through a correlation analysis of antibunching of independent quantum emitters or temporal fluctuations of blinking fluorophores. For correlation order mm the PSF in the signal is effectively taken to the mmth power, and is thus directly shrunk by the factor m\sqrt{m}. Combined with deconvolution a close to linear resolution improvement of factor mm can be obtained. Yet, analysis of high correlation orders is challenging, what limits the achievable resolutions. Here we propose to use three dimensional structured illumination along with mmth-order correlation analysis to obtain an enhanced scaling of up to m+m=2mm+m=2m. Including the stokes shift or plasmonic sub-wavelength illumination enhancements beyond 2m2m can be achieved. Hence, resolutions far below the diffraction limit in full 3D imaging can potentially be achieved already with low correlation orders. Since ICM operates in the linear regime our approach may be particularly promising for enhancing the resolution in biological imaging at low illumination levels.

Keywords

Cite

@article{arxiv.1806.00643,
  title  = {Analysis of superresolution via 3D structured illumination intensity correlation microscopy},
  author = {Anton Classen and Joachim von Zanthier and Girish S. Agarwal},
  journal= {arXiv preprint arXiv:1806.00643},
  year   = {2018}
}

Comments

revised version

R2 v1 2026-06-23T02:16:57.054Z