Journal article

X(3872) as a four-quark state in a Dyson-Schwinger/Bethe-Salpeter approach


Authors listWallbott, Paul C.; Eichmann, Gernot; Fischer, Christian S.

Publication year2019

JournalPhysical Review D

Volume number100

Issue number1

ISSN2470-0010

eISSN2470-0029

Open access statusHybrid

DOI Linkhttps://doi.org/10.1103/PhysRevD.100.014033

PublisherAmerican Physical Society


Abstract
We generalize the framework of Dyson-Schwinger and Bethe-Salpeter equations for four-quark states to accommodate the case of unequal quark masses. As a first application, we consider the quantum numbers I(J(PC)) = 0(1(++)) of the X(3872) and study the four-quark states with quark contents cq (q) over bar (c) over bar and cs (s) over bar (c) over bar. Their Bethe-Salpeter amplitudes are represented by a basis of heavy-light meson-meson, hadrocharmonium and diquark-antidiquark operators, which allows for a dynamical distinction between different internal configurations. In both cases we find the heavy-light meson-meson component to be dominant. For the putative X(3872) we obtain a mass of 3916(74) MeV; the corresponding cs (s) over bar (c) over bar state is predicted at 4068(61) MeV.



Citation Styles

Harvard Citation styleWallbott, P., Eichmann, G. and Fischer, C. (2019) X(3872) as a four-quark state in a Dyson-Schwinger/Bethe-Salpeter approach, Physical Review D, 100(1), Article 014033. https://doi.org/10.1103/PhysRevD.100.014033

APA Citation styleWallbott, P., Eichmann, G., & Fischer, C. (2019). X(3872) as a four-quark state in a Dyson-Schwinger/Bethe-Salpeter approach. Physical Review D. 100(1), Article 014033. https://doi.org/10.1103/PhysRevD.100.014033


Last updated on 2025-10-06 at 11:02