A synchronized rotating-field protocol with RF and MW decoupling for NV centers enables high-resolution nanoscale detection of isotropic chemical shifts in solid-state samples via an analytical spectrum mapping.
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Nanoscale Sensing of Solid-State Samples with High Frequency Resolution
A synchronized rotating-field protocol with RF and MW decoupling for NV centers enables high-resolution nanoscale detection of isotropic chemical shifts in solid-state samples via an analytical spectrum mapping.