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Bigi, I.I.; Le Yaouanc, A.; Oliver, L.; Pene, O.; Raynal, J.C.; Oyanguren, A.; Roudeau, P.
Deutsches Elektronen-Synchrotron (DESY), Zeuthen (Germany)2007
Deutsches Elektronen-Synchrotron (DESY), Zeuthen (Germany)2007
AbstractAbstract
[en] The OPE treatment that has been so successful in describing inclusive anti B → l anti νXc decays yields sum rules (in particular the Uraltsev sum rule and its higher moments) implying the dominance of the P wave jq=3/2 charm states in Xc over their jq=1/2 counterparts. This prediction is supported by other general arguments as well as quark model calculations, which illustrate the OPE results, and by preliminary lattice findings. Its failure would indicate a significant limitation in our theoretical understanding of anti B → l anti νXc. Some experimental issues have been clarified since a preliminary version of this note had appeared, yet the verdict on the composition of the final states beyond D, D* and the two narrow jq=3/2 resonances remains unsettled. Establishing which hadronic configurations - D/D*+π, D/D*+2π,.. - contribute, what their quantum numbers are and their mass distributions will require considerable experimental effort. We explain the theoretical issues involved and why a better understanding of them will be of considerable value. Having significant contributions from a mass continuum distribution below 2.5 GeV raises serious theoretical questions for which we have no good answer. Two lists are given, one with measurements that need to be done and one with items of theoretical homework. Some of the latter can be done by employing existing theoretical tools, whereas others need new ideas. (orig.)
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Sep 2007; 21 p; UND-HEP--07-BIG05; SFB-CPP--07-45; LPT-ORSAY--07-67; LAL--07-109; ISSN 0418-9833; 

Record Type
Report
Literature Type
Progress Report
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ANTIMATTER, ANTIMESONS, ANTIPARTICLES, B MESONS, B NEUTRAL MESONS, BEAUTY MESONS, BEAUTY PARTICLES, BOSONS, COMPOSITE MODELS, CONSTRUCTIVE FIELD THEORY, DECAY, DIMENSIONLESS NUMBERS, DOCUMENT TYPES, ELEMENTARY PARTICLES, EQUATIONS, FIELD THEORIES, HADRONS, MASS, MATHEMATICAL MODELS, MATTER, MESONS, PARTICLE DECAY, PARTICLE MODELS, PARTICLE PROPERTIES, PSEUDOSCALAR ANTIMESONS, PSEUDOSCALAR MESONS, QUANTUM FIELD THEORY, QUARK MODEL, SERIES EXPANSION, SPECTRA, WEAK PARTICLE DECAY
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