Three-Dimensional Nuclear Spin Positioning Using Coherent Radio-Frequency Control
At a Glance
Section titled āAt a Glanceā| Metadata | Details |
|---|---|
| Publication Date | 2018-10-26 |
| Journal | Physical Review Letters |
| Authors | Jonathan Zopes, Konstantin Herb, K. S. Cujia, Christian L. Degen |
| Institutions | ETH Zurich |
| Citations | 32 |
Abstract
Section titled āAbstractāDistance measurements via the dipolar interaction are fundamental to the application of nuclear magnetic resonance (NMR) to molecular structure determination, but they provide information on only the absolute distance r and polar angle Īø between spins. In this Letter, we present a protocol to also retrieve the azimuth angle Ļ. Our method relies on measuring the nuclear precession phase after the application of a control pulse with a calibrated external radio-frequency coil. We experimentally demonstrate three-dimensional positioning of individual ^{13}C nuclear spins in a diamond host crystal relative to the central electronic spin of a single nitrogen-vacancy center. The ability to pinpoint three-dimensional nuclear locations is central for realizing a nanoscale NMR technique that can image the structure of single molecules with atomic resolution.