Proposes optically hyperpolarized solids for levitated optomechanics to enable homogeneous multi-spin interferometry and surpass current NMR spinning frequencies while analyzing noise for position-based polarization readout.
Motion control and op- tical interrogation of a levitating single ni- trogen vacancy in vacuum
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Optically Hyperpolarized Materials for Levitated Optomechanics
Proposes optically hyperpolarized solids for levitated optomechanics to enable homogeneous multi-spin interferometry and surpass current NMR spinning frequencies while analyzing noise for position-based polarization readout.