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Summit of the N=40 island of inversion: Precision mass measurements and ab initio calculations of neutron-rich chromium isotopes

Publication ,  Journal Article
Silwal, R; Andreoiu, C; Ashrafkhani, B; Bergmann, J; Brunner, T; Cardona, J; Dietrich, K; Dunling, E; Gwinner, G; Hockenbery, Z; Holt, JD ...
Published in: Physics Letters Section B Nuclear Elementary Particle and High Energy Physics
October 10, 2022

Mass measurements continue to provide invaluable information for elucidating nuclear structure and scenarios of astrophysical interest. The transition region between the Z=20 and 28 proton shell closures is particularly interesting due to the onset and evolution of nuclear deformation as nuclei become more neutron-rich. This provides a critical testing ground for emerging ab-initio nuclear structure models. Here, we present high-precision mass measurements of neutron-rich chromium isotopes using the sensitive electrostatic Multiple-Reflection Time-Of-Flight Mass Spectrometer (MR-TOF-MS) at TRIUMF's Ion Trap for Atomic and Nuclear Science (TITAN) facility. Our high-precision mass measurements of 59,61−63Cr confirm previous results, and the improved precision in measurements of 64−65Cr refine the mass surface beyond N=40. With the ab initio in-medium similarity renormalization group, we examine the trends in collectivity in chromium isotopes and give a complete picture of the N=40 island of inversion from calcium to nickel.

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Published In

Physics Letters Section B Nuclear Elementary Particle and High Energy Physics

DOI

ISSN

0370-2693

Publication Date

October 10, 2022

Volume

833

Related Subject Headings

  • Nuclear & Particles Physics
  • 51 Physical sciences
  • 49 Mathematical sciences
  • 0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics
  • 0201 Astronomical and Space Sciences
  • 0105 Mathematical Physics
 

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Silwal, R., Andreoiu, C., Ashrafkhani, B., Bergmann, J., Brunner, T., Cardona, J., … Kwiatkowski, A. A. (2022). Summit of the N=40 island of inversion: Precision mass measurements and ab initio calculations of neutron-rich chromium isotopes. Physics Letters Section B Nuclear Elementary Particle and High Energy Physics, 833. https://doi.org/10.1016/j.physletb.2022.137288
Silwal, R., C. Andreoiu, B. Ashrafkhani, J. Bergmann, T. Brunner, J. Cardona, K. Dietrich, et al. “Summit of the N=40 island of inversion: Precision mass measurements and ab initio calculations of neutron-rich chromium isotopes.” Physics Letters Section B Nuclear Elementary Particle and High Energy Physics 833 (October 10, 2022). https://doi.org/10.1016/j.physletb.2022.137288.
Silwal R, Andreoiu C, Ashrafkhani B, Bergmann J, Brunner T, Cardona J, et al. Summit of the N=40 island of inversion: Precision mass measurements and ab initio calculations of neutron-rich chromium isotopes. Physics Letters Section B Nuclear Elementary Particle and High Energy Physics. 2022 Oct 10;833.
Silwal, R., et al. “Summit of the N=40 island of inversion: Precision mass measurements and ab initio calculations of neutron-rich chromium isotopes.” Physics Letters Section B Nuclear Elementary Particle and High Energy Physics, vol. 833, Oct. 2022. Scopus, doi:10.1016/j.physletb.2022.137288.
Silwal R, Andreoiu C, Ashrafkhani B, Bergmann J, Brunner T, Cardona J, Dietrich K, Dunling E, Gwinner G, Hockenbery Z, Holt JD, Izzo C, Jacobs A, Javaji A, Kootte B, Lan Y, Lunney D, Lykiardopoulou EM, Miyagi T, Mougeot M, Mukul I, Murböck T, Porter WS, Reiter M, Ringuette J, Dilling J, Kwiatkowski AA. Summit of the N=40 island of inversion: Precision mass measurements and ab initio calculations of neutron-rich chromium isotopes. Physics Letters Section B Nuclear Elementary Particle and High Energy Physics. 2022 Oct 10;833.
Journal cover image

Published In

Physics Letters Section B Nuclear Elementary Particle and High Energy Physics

DOI

ISSN

0370-2693

Publication Date

October 10, 2022

Volume

833

Related Subject Headings

  • Nuclear & Particles Physics
  • 51 Physical sciences
  • 49 Mathematical sciences
  • 0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics
  • 0201 Astronomical and Space Sciences
  • 0105 Mathematical Physics