Direct measurement of the $^3$He$^+$ magnetic moments
Abstract
Helium-3 has nowadays become one of the most important candidates for studies in fundamental physics [1, 2, 3], nuclear and atomic structure [4, 5], magnetometry and metrology [6] as well as chemistry and medicine [7, 8]. In particular, He nuclear magnetic resonance (NMR) probes have been proposed as a new standard for absolute magnetometry [6, 9]. This requires a high-accuracy value for the He nuclear magnetic moment, which, however, has so far been determined only indirectly and with a relative precision of parts per billon (p.p.b.) [10,11]. Here we investigate the He ground-state hyperfine structure in a Penning trap to directly measure the nuclear -factor of He , the zero-field hyperfine splitting Hz and the bound electron -factor . The latter is consistent with our theoretical value based on parameters and fundamental constants from [12]. Our measured value for the He nuclear -factor allows for the determination of the -factor of the bare nucleus via our accurate calculation of the diamagnetic shielding constant [13] . This constitutes the first direct calibration for He NMR probes and an improvement of the precision by one order of magnitude compared to previous indirect results. The measured zero-field hyperfine splitting improves the precision by two orders of magnitude compared to the previous most precise value [14] and enables us to determine the Zemach radius [15] to fm.
Keywords
Cite
@article{arxiv.2206.05943,
title = {Direct measurement of the $^3$He$^+$ magnetic moments},
author = {A. Schneider and B. Sikora and S. Dickopf and M. Müller and N. S. Oreshkina and A. Rischka and I. A. Valuev and S. Ulmer and J. Walz and Z. Harman and C. H. Keitel and A. Mooser and K. Blaum},
journal= {arXiv preprint arXiv:2206.05943},
year = {2022}
}