English

Compression-mode resonances in the calcium isotopes and implications for the asymmetry term in nuclear incompressibility

Nuclear Experiment 2019-12-24 v2

Abstract

Recent data on isoscalar giant monopole resonance (ISGMR) in the calcium isotopes 40,44,48^{40,44,48}Ca have suggested that KτK_\tau, the asymmetry term in the nuclear incompressibility, has a positive value. A value of Kτ>0K_\tau > 0 is entirely incompatible with present theoretical frameworks and, if correct, would have far-reaching implications on our understanding of myriad nuclear and astrophysical phenomena. This paper presents results of an independent ISGMR measurement with the 40,42,44,48^{40,42,44,48}Ca(α,α\alpha,\alpha^\prime) reaction at Eα=386E_\alpha = 386 MeV. These results conclusively discount the possibility of a positive value for KτK_\tau, and are consistent with the previously-obtained values for this quantity.

Keywords

Cite

@article{arxiv.1911.05267,
  title  = {Compression-mode resonances in the calcium isotopes and implications for the asymmetry term in nuclear incompressibility},
  author = {Kevin B. Howard and Umesh Garg and Masatoshi Itoh and Hidetoshi Akimune and Soumya Bagchi and Takanobu Doi and Yuki Fujikawa and Mamoru Fujiwara and Tatsuya Furuno and Muhsin N. Harakeh and Yuto Hijikata and Kento Inaba and Shunya Ishida and Nasser Kalantar-Nayestanaki and Takahiro Kawabata and Shoutaro Kawashima and Kazuya Kitamura and Nobuyuki Kobayashi and Yohei Matsuda and Anna Nakagawa and Shoken Nakamura and Kyoko Nosaka and Shintaro Okamoto and Shinsuke Ota and Sierra Weyhmiller and Zaihong Yang},
  journal= {arXiv preprint arXiv:1911.05267},
  year   = {2019}
}

Comments

7 pages, 4 figures, 2 tables. Accepted for publication to Physics Letters B. Minor revisions of some wording relative to original submission