English

Pseudoscalar and vector open-charm mesons at finite temperature

High Energy Physics - Phenomenology 2020-11-25 v2 Nuclear Theory

Abstract

Vacuum and thermal properties of pseudoscalar and vector charm mesons are analyzed within a self-consistent many-body approach, employing a chiral effective field theory that incorporates heavy-quark spin symmetry. Upon unitarization of the vacuum interaction amplitudes for the scattering of charm mesons off light mesons in a fully coupled-channel basis, new dynamically generated states are searched. The imaginary-time formalism is employed to extend the calculation to finite temperatures up to T=150T=150 MeV. Medium-modified spectral shapes of the DD, DD^*, DsD_s and DsD_s^* mesons are provided. The temperature dependence of the masses and decay widths of the nonstrange D0D_0^* (2300) and D1D_1^*(2430) mesons, both showing a double-pole structure in the complex-energy plane, is also reported, as well as that of the Ds0D_{s0}^*(2317) and Ds1D_{s1}^*(2460) resonances and other states not yet identified experimentally. Being the first calculation incorporating open-charm vector mesons at finite temperature in a self-consistent fashion, it brings up the opportunity to discuss the medium effects on the open charm sector under the perspective of chiral and heavy-quark spin symmetries.

Keywords

Cite

@article{arxiv.2007.12601,
  title  = {Pseudoscalar and vector open-charm mesons at finite temperature},
  author = {Glòria Montaña and Àngels Ramos and Laura Tolos and Juan M. Torres-Rincon},
  journal= {arXiv preprint arXiv:2007.12601},
  year   = {2020}
}

Comments

47 pages, 10 figures, 8 tables. References added and typos removed. Additional explanations on unitarization procedure, medium modifications of pion, and cutoff parameter dependence. Version accepted for publication in Physical Review D journal

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