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Dynamic-nuclear-polarization-weighted spectroscopy of multi-spin electronic-nuclear clusters

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arxiv 2306.13193 v1 pith:ZU4AJCAD submitted 2023-06-22 cond-mat.mes-hall

Dynamic-nuclear-polarization-weighted spectroscopy of multi-spin electronic-nuclear clusters

classification cond-mat.mes-hall
keywords nuclearspinclustersdynamicsexcitationhybridmulti-spinnuclei
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Nuclear spins and paramagnetic centers in a solid randomly group to form clusters featuring nearly-degenerate, hybrid states whose dynamics are central to processes involving nuclear spin-lattice relaxation and diffusion. Their characterization, however, has proven notoriously difficult mostly due to their relative isolation and comparatively low concentration. Here, we combine field-cycling experiments, optical spin pumping, and variable radio-frequency (RF) excitation to probe transitions between hybrid multi-spin states formed by strongly coupled electronic and nuclear spins in diamond. Leveraging bulk nuclei as a collective time-integrating sensor, we probe the response of these spin clusters as we simultaneously vary the applied magnetic field and RF excitation to reconstruct multi-dimensional spectra. We uncover complex nuclear polarization patterns of alternating sign that we qualitatively capture through analytical and numerical modeling. Our results unambiguously expose the impact that strongly-hyperfine-coupled nuclei can have on the spin dynamics of the crystal, and inform future routes to spin cluster control and detection.

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