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Super-localisation of a point-like emitter in a resonant environment : correction of the mirage effect

Published 13 Jul 2022 in math.AP and physics.optics | (2207.06288v1)

Abstract: In this paper, we show that it is possible to overcome one of the fundamental limitations of super-resolution microscopy techniques: the necessity to be in an \emph{optically homogeneous} environment. Using recent modal approximation results we show as a proof of concept that it is possible to recover the position of a single point-like emitter in a \emph{known resonant environment} from far-field measurements with a precision two orders of magnitude below the classical Rayleigh limit. The procedure does not involve solving any partial differential equation, is computationally light (optimisation in $\Rd$ with $d$ of the order of $10$) and therefore suited for the recovery of a very large number of single emitters.

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