4.7 Article

Symmetry preserving truncations of the gap and Bethe-Salpeter equations

期刊

PHYSICAL REVIEW D
卷 93, 期 9, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.93.096010

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资金

  1. Spanish MEYC Grants [FPA2014-53631-C2-1-P, SEV-2014-0398]
  2. Generalitat Valenciana [PrometeoII/2014/066]
  3. Argonne National Laboratory Office of the Director
  4. U.S. Department of Energy, Office of Science, Office of Nuclear Physics [DE-AC02-06CH11357]

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Ward-Green-Takahashi (WGT) identities play a crucial role in hadron physics, e.g. imposing stringent relationships between the kernels of the one-and two-body problems, which must be preserved in any veracious treatment of mesons as bound states. In this connection, one may view the dressed gluon-quark vertex, Gamma(alpha)(mu), as fundamental. We use a novel representation of Gamma(alpha)(mu), in terms of the gluon-quark scattering matrix, to develop a method capable of elucidating the unique quark-antiquark Bethe-Salpeter kernel, K, that is symmetry consistent with a given quark gap equation. A strength of the scheme is its ability to expose and capitalize on graphic symmetries within the kernels. This is displayed in an analysis that reveals the origin of H-diagrams in K, which are two-particle-irreducible contributions, generated as two-loop diagrams involving the three-gluon vertex, that cannot be absorbed as a dressing of Gamma(alpha)(mu) in a Bethe-Salpeter kernel nor expressed as a member of the class of crossed-box diagrams. Thus, there are no general circumstances under which the WGT identities essential for a valid description of mesons can be preserved by a Bethe-Salpeter kernel obtained simply by dressing both gluon-quark vertices in a ladderlike truncation; and, moreover, adding any number of similarly dressed crossed-box diagrams cannot improve the situation.

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