Published January 1999 | Version v1
Journal article

Charmless decays of the B-meson in perturbative QCD

  • 1. Institute of Particle Physics, Central China Normal University, Wuhan, 430079, Hubei Province (China)
  • 2. CCAST (World Laboratory), PO Box 8730, Beijing 100080 (China)
  • 3. Institute of High Energy Physics, Academia Sinica, PO Box 918 (4), Beijing, 100039 (China)

Description

Using the perturbative QCD method and Chau's six-quark-graph scheme, we report a theoretical calculation of exclusive nonleptonic decays of the B meson into two light pseudoscalar mesons in the context of the low-energy effective Hamiltonian. The contributions from both tree-level and one-loop diagrams are taken into account. Under the approximation of neglecting light quark and light meson masses, we find that (i) within perturbative QCD there is no singularity which exists in the computation of spacelike penguin diagrams when the BSW model is used; (ii) the contributions from spacelike-type (W-annihilation, W-exchange, spacelike penguin and penguin-annihilation) graphs are strongly suppressed relative to those from timelike-type (external W-emission, internal W-emission and timelike penguin) ones; (iii) our results are well below the experimental upper limits but lower than the BSW ones. (author)

Additional details

Publishing Information

Journal Title
Journal of Physics. G, Nuclear and Particle Physics (Online)
Journal Volume
25
Journal Issue
1
Journal Page Range
p. 1-10
ISSN
1361-6471

INIS

Country of Publication
International Atomic Energy Agency (IAEA)
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
31029455
Subject category
S72: PHYSICS OF ELEMENTARY PARTICLES AND FIELDS;
Descriptors DEI
B MESONS; PERTURBATION THEORY; QUANTUM CHROMODYNAMICS; QUARK MODEL; WEAK PARTICLE DECAY
Descriptors DEC
BEAUTY MESONS; BEAUTY PARTICLES; BOSONS; COMPOSITE MODELS; DECAY; ELEMENTARY PARTICLES; FIELD THEORIES; HADRONS; MATHEMATICAL MODELS; MESONS; PARTICLE DECAY; PARTICLE MODELS; PSEUDOSCALAR MESONS; QUANTUM FIELD THEORY

Optional Information

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