Precision mass measurements of $^{74-76}$Sr using TITAN's Multiple-Reflection Time-of-Flight Mass Spectrometer

Fuente: arXiv
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Autori principali: Hockenbery, Z., Murböck, T., Ashrafkhani, B., Bergmann, J., Brown, C., Brunner, T., Cardona, J., Dickel, T., Dunling, E., Holt, J. D., Hornung, C., Hu, B. S., Izzo, C., Jacobs, A., Javaji, A., Kakkar, S., Kootte, B., Kripko-Koncz, G., Mollaebrahimi, Ali, Lascar, D., Lykiardopoulou, E. M., Mukul, I., Paul, S. F., Plaß, W. R., Porter, W. S., Reiter, M. P., Ringuette, J., Schatz, H., Scheidenberger, C., Walls, C., Wang, Y., Kwiatkowski, A. A.
Natura: Preprint
Pubblicazione: 2025
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author Hockenbery, Z.
Murböck, T.
Ashrafkhani, B.
Bergmann, J.
Brown, C.
Brunner, T.
Cardona, J.
Dickel, T.
Dunling, E.
Holt, J. D.
Hornung, C.
Hu, B. S.
Izzo, C.
Jacobs, A.
Javaji, A.
Kakkar, S.
Kootte, B.
Kripko-Koncz, G.
Mollaebrahimi, Ali
Lascar, D.
Lykiardopoulou, E. M.
Mukul, I.
Paul, S. F.
Plaß, W. R.
Porter, W. S.
Reiter, M. P.
Ringuette, J.
Schatz, H.
Scheidenberger, C.
Walls, C.
Wang, Y.
Kwiatkowski, A. A.
author_facet Hockenbery, Z.
Murböck, T.
Ashrafkhani, B.
Bergmann, J.
Brown, C.
Brunner, T.
Cardona, J.
Dickel, T.
Dunling, E.
Holt, J. D.
Hornung, C.
Hu, B. S.
Izzo, C.
Jacobs, A.
Javaji, A.
Kakkar, S.
Kootte, B.
Kripko-Koncz, G.
Mollaebrahimi, Ali
Lascar, D.
Lykiardopoulou, E. M.
Mukul, I.
Paul, S. F.
Plaß, W. R.
Porter, W. S.
Reiter, M. P.
Ringuette, J.
Schatz, H.
Scheidenberger, C.
Walls, C.
Wang, Y.
Kwiatkowski, A. A.
contents We report precision mass measurements of $^{74-76}$Sr performed with the TITAN Multiple-Reflection Time-of-Flight Mass Spectrometer. This marks a first time mass measurement of $^{74}$Sr and gives increased mass precision to both $^{75}$Sr and $^{76}$Sr which were previously measured using storage ring and Penning trap methods, respectively. This completes the A = 74, T = 1 isospin triplet and gives increased precision to the A = 75, T = 1/2 isospin doublet which are both the heaviest experimentally evaluated triplets and doublets to date. The new data allow us to evaluate coefficients of the isobaric multiplet mass equation for the first time at A = 74, and with increased precision at A = 75. With increased precision of 75Sr, we confirm the recent measurement reported by CSRe which was used to remove a staggering anomaly in the doublets. New ab initio valence-space in-medium similarity renormalization group calculations of the T = 1 triplet are presented at A = 74. We also investigate the impact of the new mass data on the reaction flow of the rapid proton capture process in type I x-ray bursts using a single-zone model.
format Preprint
id arxiv_https___arxiv_org_abs_2501_06723
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Precision mass measurements of $^{74-76}$Sr using TITAN's Multiple-Reflection Time-of-Flight Mass Spectrometer
Hockenbery, Z.
Murböck, T.
Ashrafkhani, B.
Bergmann, J.
Brown, C.
Brunner, T.
Cardona, J.
Dickel, T.
Dunling, E.
Holt, J. D.
Hornung, C.
Hu, B. S.
Izzo, C.
Jacobs, A.
Javaji, A.
Kakkar, S.
Kootte, B.
Kripko-Koncz, G.
Mollaebrahimi, Ali
Lascar, D.
Lykiardopoulou, E. M.
Mukul, I.
Paul, S. F.
Plaß, W. R.
Porter, W. S.
Reiter, M. P.
Ringuette, J.
Schatz, H.
Scheidenberger, C.
Walls, C.
Wang, Y.
Kwiatkowski, A. A.
Nuclear Experiment
We report precision mass measurements of $^{74-76}$Sr performed with the TITAN Multiple-Reflection Time-of-Flight Mass Spectrometer. This marks a first time mass measurement of $^{74}$Sr and gives increased mass precision to both $^{75}$Sr and $^{76}$Sr which were previously measured using storage ring and Penning trap methods, respectively. This completes the A = 74, T = 1 isospin triplet and gives increased precision to the A = 75, T = 1/2 isospin doublet which are both the heaviest experimentally evaluated triplets and doublets to date. The new data allow us to evaluate coefficients of the isobaric multiplet mass equation for the first time at A = 74, and with increased precision at A = 75. With increased precision of 75Sr, we confirm the recent measurement reported by CSRe which was used to remove a staggering anomaly in the doublets. New ab initio valence-space in-medium similarity renormalization group calculations of the T = 1 triplet are presented at A = 74. We also investigate the impact of the new mass data on the reaction flow of the rapid proton capture process in type I x-ray bursts using a single-zone model.
title Precision mass measurements of $^{74-76}$Sr using TITAN's Multiple-Reflection Time-of-Flight Mass Spectrometer
topic Nuclear Experiment
url https://arxiv.org/abs/2501.06723