Scaling of the two-neutron halo properties close to unitarity
Emiko Hiyama, Rimantas Lazauskas, Jaume Carbonell, and Tobias Frederico
Phys. Rev. C 106, 064001 (2022) - Published 1 December, 2022
Nuclear properties with semilocal momentum-space regularized chiral interactions beyond
P. Maris, R. Roth, E. Epelbaum, R. J. Furnstahl, J. Golak, K. Hebeler, T. Hüther, H. Kamada, H. Krebs, H. Le, Ulf-G. Meißner, J. A. Melendez, A. Nogga, P. Reinert, R. Skibiński, J. P. Vary, H. Witała, and T. Wolfgruber (LENPIC Collaboration)
Phys. Rev. C 106, 064002 (2022) - Published 5 December, 2022
Pion absorption from the lowest atomic orbital in , and
J. Golak, V. Urbanevych, R. Skibiński, H. Witała, K. Topolnicki, V. Baru, A. A. Filin, E. Epelbaum, H. Kamada, and A. Nogga
Phys. Rev. C 106, 064003 (2022) - Published 19 December, 2022
Bound-state formation in time-dependent potentials
Jan Rais, Hendrik van Hees, and Carsten Greiner
Phys. Rev. C 106, 064004 (2022) - Published 20 December, 2022
Entanglement generation in few-nucleon scattering
Dong Bai and Zhongzhou Ren
Phys. Rev. C 106, 064005 (2022) - Published 21 December, 2022
Quasibound state in the system
N. V. Shevchenko
Phys. Rev. C 106, 064006 (2022) - Published 27 December, 2022
The attractive nature of the antikaon-nucleon interaction suggests that few-body systems of antikaons and nucleons can exist. The author presents a new study of the exotic system. Four-body Faddeev-type equations are used to evaluate the binding energy and the width of the quasi-bound state in the system. The dependence of the results on the two-body antikaon-nucleon and nucleon-nucleon interactions is quantified.

