English

Open bottom mesons in asymmetric nuclear matter in presence of strong magnetic fields

Nuclear Theory 2018-07-18 v2 High Energy Physics - Phenomenology

Abstract

The modifications of the masses of the BB and Bˉ\bar B mesons in asymmetric nuclear matter in the presence of strong magnetic fields, are investigated using a chiral effective model. The medium modifications of these open bottom mesons arise due to their interactions with the scalar mesons and the nucleons. In the magnetized nuclear matter, the proton has contributions from the Landau levels. In the chiral effective model, the masses of the BB and Bˉ\bar B are calculated from the leading term, namely the vectorial Weinberg Tomozawa term as well as from the next to leading order contributions, i.e., due to the scalar exchange and the range terms. Due to the Weinberg-Tomozawa term, the Bˉ\bar B mesons experience an attractive interaction in the symmetric nuclear matter, whereas the BB mesons have a repulsive interaction. Inclusion of the contributions from the scalar exchange and the range terms as well, leads to drop of the masses of both BB and Bˉ\bar B mesons. The effect of the isospin asymmetry breaks the mass degeneracy of the B+B^+ and B0B^0 (as well as of the BB^- and B0ˉ\bar {B^0}) mesons, and its effect is observed to be large at high densities. The effects of anomalous magnetic moments of the nucleons are taken into account in the present study of the masses of the open bottom mesons in magnetized nuclear matter.

Keywords

Cite

@article{arxiv.1801.06405,
  title  = {Open bottom mesons in asymmetric nuclear matter in presence of strong magnetic fields},
  author = {Nikhil Dhale and Sushruth P Reddy and Amal Jahan CS and Amruta Mishra},
  journal= {arXiv preprint arXiv:1801.06405},
  year   = {2018}
}

Comments

25 pages, 7 figures (eps files), version to be published in Phys.Rev.C. arXiv admin note: substantial text overlap with arXiv:1712.07997