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Capture sites of Ba and Ba+ daughters from double beta decay when frozen into SXe

Determine which solid xenon matrix sites (single-vacancy, tetra-vacancy, hexa-vacancy, and asymmetric 5/7-atom vacancies) capture Ba atoms and Ba+ ions produced by double beta decay in liquid xenon when the daughters are frozen into solid xenon.

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Background

Ba tagging in nEXO requires understanding where daughter species reside in SXe to choose suitable excitation wavelengths and predict photobleaching behavior for single-atom imaging.

While several SXe sites have been spectroscopically characterized for Ba under vacuum deposition, the site occupancy following freeze-out from LXe remains unknown and is crucial for designing a robust tagging protocol.

References

In liquid xenon, it is not known into which of these sites the daughter Ba atoms and Ba$+$ ions from double beta decay will be captured when frozen into SXe.