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  Ground State Electromagnetic Moments of 37Ca

Klose, A., Minamisono, K., Miller, A. J., Brown, B. A., Garand, D., Holt, J. D., et al. (2019). Ground State Electromagnetic Moments of 37Ca. Physical Review C, 99(6): 061301(R). doi:10.1103/PhysRevC.99.061301.

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1906.02298.pdf (Preprint), 424KB
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https://doi.org/10.1103/PhysRevC.99.061301 (Publisher version)
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 Creators:
Klose, A., Author
Minamisono, K., Author
Miller, A. J., Author
Brown, B. A., Author
Garand, D., Author
Holt, J. D., Author
Lantis, J. D., Author
Liu, Y., Author
Maaß, B., Author
Nörtershäuser, W., Author
Pineda, S. V., Author
Rossi, D. M., Author
Schwenk, A.1, Author           
Sommer, F., Author
Sumithrarachchi, C., Author
Teigelhöfer, A., Author
Watkins, J., Author
Affiliations:
1Division Prof. Dr. Klaus Blaum, MPI for Nuclear Physics, Max Planck Society, ou_904548              

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Free keywords: Nuclear Experiment, nucl-ex,Nuclear Theory, nucl-th
 MPINP: Starke Wechselwirkung und exotische Kerne – Abteilung Blaum
 Abstract: The hyperfine coupling constants of neutron deficient $^{37}$Ca were deduced
from the atomic hyperfine spectrum of the $4s~^2S_{1/2}$ $\leftrightarrow$
$4p~^2P_{3/2}$ transition in Ca II, measured using the collinear laser
spectroscopy technique. The ground-state magnetic-dipole and spectroscopic
electric-quadrupole moments were determined for the first time as $\mu =
+0.7453(72) \mu_N$ and $Q = -15(11)$ $e^2$fm$^2$, respectively. The
experimental values agree well with nuclear shell model calculations using the
universal sd model-space Hamiltonians versions A and B (USDA/B) in the
$sd$-model space with a 95\% probability of the canonical nucleon
configuration. It is shown that the magnetic moment of $^{39}$Ca requires a
larger non-$sd$-shell component than that of $^{37}$Ca for good agreement with
the shell-model calculation, indicating a more robust closed sub-shell
structure of $^{36}$Ca at the neutron number $N$ = 16 than $^{40}$Ca. The
results are also compared to valence-space in-medium similarity renormalization
group calculations based on chiral two- and three-nucleon interactions.

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 Dates: 2019-06-07
 Publication Status: Published online
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Title: Physical Review C
  Other : Phys. Rev. C
Source Genre: Journal
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Publ. Info: New York, NY : American Physical Society
Pages: - Volume / Issue: 99 (6) Sequence Number: 061301(R) Start / End Page: - Identifier: ISSN: 0556-2813
CoNE: https://pure.mpg.de/cone/journals/resource/954925225009