Nanoscale resolution for fluorescence microscopy via adiabatic passage
Quantum Physics
2015-04-14 v1 Biological Physics
Optics
Abstract
We propose the use of the subwavelength localization via adiabatic passage technique for fluorescence microscopy with nanoscale resolution in the far field. This technique uses a {\Lambda}-type medium coherently coupled to two laser pulses: the pump, with a node in its spatial profile, and the Stokes. The population of the {\Lambda} system is adiabatically transferred from one ground state to the other except at the node position, yielding a narrow population peak. This coherent localization allows fluorescence imaging with nanometer lateral resolution. We derive an analytical expression to asses the resolution and perform a comparison with the coherent population trapping and the stimulated-emission-depletion techniques.
Keywords
Cite
@article{arxiv.1504.03171,
title = {Nanoscale resolution for fluorescence microscopy via adiabatic passage},
author = {Juan Luis Rubio and Daniel Viscor and Verònica Ahufinger and Jordi Mompart},
journal= {arXiv preprint arXiv:1504.03171},
year = {2015}
}
Comments
5 pages, 3 figures