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Analytical description of high-aperture STED resolution with 0-2π vortex phase modulation

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arxiv 1302.1646 v1 pith:CNAACP5U submitted 2013-02-07 physics.optics

Analytical description of high-aperture STED resolution with 0-2$\pi$ vortex phase modulation

classification physics.optics
keywords stedresolutionpoweranalyticalopticaldescriptionfocalmodulation
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

Stimulated emission depletion (STED) can achieve optical super-resolution, with the optical diffraction limit broken by the suppression on the periphery of the fluorescent focal spot. Previously, it is generally experimentally accepted that there exists an inverse square root relationship with the STED power and the resolution, yet without strict analytical description. In this paper, we have analytically verified the relationship between the STED power and the achievable resolution from vector optical theory for the widely used 0-2$\pi$ vortex phase modulation. Electromagnetic fields of the focal region of a high numerical aperture objective are calculated and approximated into polynomials, and analytical expression of resolution as a function of the STED intensity has been derived. As a result, the resolution can be estimated directly from the measurement of the saturation power of the dye and the STED power applied.

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