Abstract
We demonstrate the breaking of the diffraction resolution barrier in far-field fluorescence microscopy by photoswitching ensembles of optically bistable organic molecular markers from a non-fluorescent to a fluorescent state and back. The photoswitching is accomplished by an isomerization reaction of a photochromic compound serving as a reversible energy acceptor of a fluorescent compound. The surpassing of the diffraction barrier with power levels of only a few hundred W cm-2 of continuous wave irradiation is evidenced both in the effective point spread function and in the fluorescence images of test samples. © IOP Publishing Ltd and Deutsche Physikalische Gesellschaft.
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CITATION STYLE
Bossi, M., Fölling, J., Dyba, M., Westphal, V., & Hell, S. W. (2006). Breaking the diffraction resolution barrier in far-field microscopy by molecular optical bistability. New Journal of Physics, 8. https://doi.org/10.1088/1367-2630/8/11/275
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