Abstract
We propose fundamental improvements in three-dimensional (3D) resolution of multiple excitation spot optical microscopy. The excitation point spread function (PSF) is generated by two interfering counter-propagating depth-of-focus beams along the optical axis. Detection PSF is obtained by coherently interfering the emitted fluorescent light (collected by both the objectives) at the detector. System PSF shows upto 14-fold reduction in focal volume as compared to confocal, and almost 2-fold improvement in lateral resolution. Proposed PSF has the ability to simultaneously excite multiple 3D-spots of sub-femtoliter volume. Potential applications are in fluorescence microscopy and nanobioimaging. © 2011 Author(s). This article is distributed under a Creative Commons Attribution 3.0 Unported License.
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CITATION STYLE
Dilipkumar, S., & Mondal, P. P. (2011). High resolution multiple excitation spot optical microscopy. AIP Advances, 1(2). https://doi.org/10.1063/1.3598413
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