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Laser spectroscopy of aromatic molecules with optical cycling centers: strontium (I) phenoxides

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arxiv 2209.13025 v2 pith:MBLS4RHX submitted 2022-09-26 physics.atom-ph physics.chem-ph

Laser spectroscopy of aromatic molecules with optical cycling centers: strontium (I) phenoxides

classification physics.atom-ph physics.chem-ph
keywords opticalcyclinglaserstatestrontiumexcitationmathrmphenoxides
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We report the production and spectroscopic characterization of strontium (I) phenoxide ($\mathrm{SrOC}_6\mathrm{H}_5$, or SrOPh) and variants featuring electron-withdrawing groups designed to suppress vibrational excitation during spontaneous emission from the electronically excited state. Optical cycling closure of these species, which is the decoupling of vibrational state changes from spontaneous optical decay, is found by dispersed laser-induced fluorescence spectroscopy to be high, in accordance with theoretical predictions. A high-resolution, rotationally-resolved laser excitation spectrum is recorded for SrOPh, allowing the estimation of spectroscopic constants and identification of candidate optical cycling transitions for future work. The results confirm the promise of strontium phenoxides for laser cooling and quantum state detection at the single-molecule level.

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