Published August 2013 | Version v1
Journal article

Charmed Mesons in Nuclei with Heavy-Quark Spin Symmetry

  • 1. Frankfurt Institute for Advanced Studies, Johann Wolfgang Goethe University, Ruth-Moufang-Str. 1, 60438, Frankfurt am Main (Germany)
  • 2. Facultat de Ciències, Instituto de Ciencias del Espacio (IEEC/CSIC), Campus Universitat Autònoma de Barcelona, Torre C5, 08193, (Barcelona) Bellaterra (Spain)
  • 3. Departamento de Física Atómica, Molecular y Nuclear, Universidad de Granada, 18071, Granada (Spain)
  • 4. Instituto de Física Corpuscular (centro mixto CSIC-UV), Institutos de Investigación de Paterna, Aptdo. 22085, 46071, Valencia (Spain)
  • 5. Theory Group, KVI, University of Groningen, Zernikelaan 25, 9747 AA, Groningen (Netherlands)

Description

We study the properties of charmed pseudoscalar and vector mesons in dense matter within a unitary meson–baryon coupled-channel model which incorporates heavy-quark spin symmetry. This is accomplished by extending the SU(3) Weinberg–Tomozawa Lagrangian to incorporate spin-flavor symmetry and implement a suitable flavor symmetry breaking. Several resonances with negative parity are generated dynamically by the s-wave interaction between pseudoscalar and vector meson multiplets with 1/2+ and 3/2+ baryons. Those states are then compared to experimental data as well as theoretical models. Next, Pauli-blocking effects and meson self-energies are introduced in a self-consistent manner to obtain the open-charm meson spectral functions in a dense nuclear environment. We finally discuss the formation of D-mesic nuclei. (author)

Additional details

Identifiers

Publishing Information

Journal Title
Few-Body Systems
Journal Volume
54
Journal Issue
7-10
Journal Page Range
p. 923-929
ISSN
0177-7963
CODEN
FBSYEQ