Analysis of the heavy mesons in the nuclear matter with the QCD sum rules
arXiv:1501.05093 · doi:10.1103/PhysRevC.92.065205
Abstract
In this article, I calculate the contributions of the nuclear matter induced condensates up to dimension 5, take into account the next-to-leading order contributions of the nuclear matter induced quark condensate, study the properties of the scalar, pseudoscalar, vector and axial-vector heavy mesons in the nuclear matter with the QCD sum rules in a systematic way, and obtain the shifts of the masses and decay constants. Furthermore, I study the heavy-meson-nucleon scattering lengths as a byproduct, and obtain the conclusion qualitatively about the possible existence of heavy-meson-nucleon bound states.
19 pages, 18 figures. arXiv admin note: text overlap with arXiv:1109.5219
References in corpus (16)
- QCD sum rules for D and B mesons in nuclear matter
- Analysis of the and heavy and doubly heavy baryon states with QCD sum rules
- Future Prospects for Hadron Physics at PANDA
- and masses in isospin asymmetric hot nuclear matter - a QCD sum rule approach
- D-mesons in asymmetric nuclear matter
- Charmonium dissociation and recombination at RHIC and LHC
- The decay constant of the first excited pion from lattice QCD
- Analysis of strong decays of the charmed mesons D(2550), D(2600), D(2750) and D(2760)
- More about the and mesons in nuclear matter
- Wilson coefficients and four-quark condensates in QCD sum rules for medium modifications of mesons
- In-Medium Modifications of Scalar Charm Mesons in Nuclear Matter
- Analysis of the doubly heavy baryons in the nuclear matter with the QCD sum rules
- Strong decay with light-cone QCD sum rules
- Role of Four-Quark Condensates in QCD Sum Rules
- Strong decays and related strong coupling constant
- Heavy-quark expansion for D and B mesons in nuclear matter
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- Analysis of pseudoscalar and scalar mesons and charmonium decay width in hot magnetized asymmetric nuclear matter
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