arXiv · 1512.00347
Microscopy with a Deterministic Single Ion Source
Abstract
We realize a single particle microscope by using deterministically extracted laser cooled $^{40}$Ca$^+$ ions from a Paul trap as probe particles for transmission imaging. We demonstrate focusing of the ions with a resolution of 5.8$\;\pm\;$1.0$\,$nm and a minimum two-sample deviation of the beam position of 1.5$\,$nm in the focal plane. The deterministic source, even when used in combination with an imperfect detector, gives rise to much higher signal to noise ratios as compared with conventional Poissonian sources. Gating of the detector signal by the extraction event suppresses dark counts by 6 orders of magnitude. We implement a Bayes experimental design approach to microscopy in order to maximize the gain in spatial information. We demonstrate this method by determining the position of a 1$\,\mu$m circular hole structure to an accuracy of 2.7$\,$nm using only 579 probe particles.
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Georg Jacob, Karin Groot-Berning, Sebastian Wolf, Stefan Ulm, Luc Couturier, Samuel T. Dawkins, Ulrich G. Poschinger, Ferdinand Schmidt-Kaler, Kilian Singer. 2015-12-01. Microscopy with a Deterministic Single Ion Source. https://doi.org/10.1103/physrevlett.117.043001
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