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Franck-Condon tuning of optical cycling centers by organic functionalization

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arxiv 2010.04207 v1 pith:CQNWLNJ4 submitted 2020-10-08 physics.atom-ph

Franck-Condon tuning of optical cycling centers by organic functionalization

classification physics.atom-ph
keywords opticalcyclingstatechemicallasermeasurementorganicquantum
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Laser induced electronic excitations that spontaneously emit photons and decay directly to the initial ground state ("optical cycling transitions") are used in quantum information and precision measurement for state initialization and readout. To extend this primarily atomic technique to organic compounds, we theoretically investigate optical cycling of alkaline earth phenoxides and their functionalized derivatives. We find that optical cycle leakage due to wavefunction mismatch is low in these species, and can be further suppressed by using chemical substitution to boost the electron withdrawing strength of the aromatic molecular ligand through resonance and induction effects. This provides a straightforward way to use chemical functional groups to construct optical cycling moieties for laser cooling, state preparation, and quantum measurement.

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