Title of article
Decay constants of the pseudoscalar mesons in the framework of the coupled Schwinger–Dyson equation and Bethe–Salpeter equation Original Research Article
Author/Authors
Zhi-Gang Wang، نويسنده , , Wei-Min Yang، نويسنده , , Shaolong Wan، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 2004
Pages
12
From page
156
To page
167
Abstract
In this article, we investigate the structures of the pseudoscalar mesons (π, K, D, Ds, B and Bs) in the framework of the coupled rainbow Schwinger–Dyson equation and ladder Bethe–Salpeter equation with the confining effective potential (infrared modified flat bottom potential). The Schwinger–Dyson functions for the u, d and s quarks are greatly renormalized at small momentum region and the curves are steep at about q2=1 GeV2 which indicates an explicitly dynamical symmetry breaking. The Euclidean time Fourier transformed quark propagators have no mass poles in the time-like region which naturally implements confinement. As for the c and b quarks, the current masses are very large, the renormalization are more tender, however, mass poles in the time-like region are also absent. The Bethe–Salpeter wavefunctions for those mesons have the same type (Gaussian type) momentum dependence and center around small momentum which indicate that the bound states exist in the infrared region. The decay constants for those pseudoscalar mesons are compatible with the values of experimental extractions and theoretical calculations, such as lattice simulations and QCD sum rules.
Keywords
Schwinger–Dyson equation , Bethe–Salpeter equation , Decay constant , Dynamical symmetry breaking , Confinement
Journal title
Nuclear physics A
Serial Year
2004
Journal title
Nuclear physics A
Record number
1201512
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