Fluorescence imaging of individual ions and molecules in pressurized noble gases for barium tagging in <sup>136</sup>Xe.

Byrnes, N K; Dey, E; Foss, F W; Jones, B J P; Madigan, R; McDonald, A D; Miller, R L; Norman, L R et al. · Nat Commun · 2024

basic_science · Level V

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Abstract

The imaging of individual Ba<sup>2+</sup> ions in high pressure xenon gas is one possible way to attain background-free sensitivity to neutrinoless double beta decay and hence establish the Majorana nature of the neutrino. In this paper we demonstrate selective single Ba<sup>2+</sup> ion imaging inside a high-pressure xenon gas environment. Ba<sup>2+</sup> ions chelated with molecular chemosensors are resolved at the gas-solid interface using a diffraction-limited imaging system with scan area of 1 × 1 cm<sup>2</sup> located inside 10 bar of xenon gas. This form of microscopy represents key ingredient in the development of barium tagging for neutrinoless double beta decay searches in <sup>136</sup>Xe. This also provides a new tool for studying the photophysics of fluorescent molecules and chemosensors at the solid-gas interface to enable bottom-up design of catalysts and sensors.