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All-optical hyperpolarization of electron and nuclear spins in diamond

Published 12 Oct 2016 in cond-mat.mes-hall and quant-ph | (1610.03823v2)

Abstract: Low thermal polarization of nuclear spins is a primary sensitivity limitation for nuclear magnetic resonance. Here we demonstrate optically pumped (microwave-free) nuclear spin polarization of ${13}\mathrm{C}$ and ${15}\mathrm{N}$ in ${15}\mathrm{N}$-doped diamond. ${15}\mathrm{N}$ polarization enhancements up to $-2000$ above thermal equilibrium are observed in the paramagnetic system $\mathrm{N_s}{0}$. Nuclear spin polarization is shown to diffuse to bulk ${13}\mathrm{C}$ with NMR enhancements of $-200$ at room temperature and $-500$ at $\mathrm{240~K}$, enabling a route to microwave-free high-sensitivity NMR study of biological samples in ambient conditions.

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