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000594453 0247_ $$2arXiv$$aarXiv:hep-ph/9406359
000594453 0247_ $$2datacite_doi$$a10.3204/PUBDB-2023-05837
000594453 037__ $$aPUBDB-2023-05837
000594453 041__ $$aEnglish
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000594453 088__ $$2arXiv$$ahep-ph/9406359
000594453 088__ $$2DESY$$aDESY-94-095
000594453 088__ $$2arXiv$$aMZ-THEP-94-08
000594453 1001_ $$aKorner, J. G.$$b0
000594453 245__ $$aHeavy baryons
000594453 260__ $$c1994
000594453 300__ $$a92
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000594453 500__ $$aIn *Faessler, A. (ed.): Progress in particle and nuclear physics, vol. 33* 787-868. and Hamburg DESY - DESY 94-095 (94/06,rec.Jun.) 93 p
000594453 520__ $$aWe review the experimental and theoretical status of baryons containing one heavy quark. The charm and bottom baryon states are classified and their mass spectra are listed. The appropriate theoretical framework for the description of heavy baryons is the Heavy Quark Effective Theory, whose general ideas and methods are introduced and illustrated in specific examples. We present simple covariant expressions for the spin wave functions of heavy baryons including p-wave baryons. The covariant spin wave functions are used to determine the Heavy Quark Symmetry structure of flavour--changing current--induced transitions between heavy baryons as well as one-pion and one-photon transitions between heavy baryons of the same flavour. We discuss $1/m_Q$ corrections to the current--induced transitions as well as the structure of heavy to light baryon transitions. Whenever possible we attempt to present numbers to compare with experiment by making use of further model--dependent assumptions as e.g. the constituent picture for light quarks. We highlight recent advances in the theoretical understanding of the inclusive decays of hadrons containing one heavy quark including polarization. For exclusive semileptonic decays we discuss rates, angular decay distributions and polarization effects. We provide an update of the experimental and theoretical status of lifetimes of heavy baryons and of exclusive nonleptonic two body decays of charm baryons.
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000594453 650_7 $$2INSPIRE$$areview
000594453 650_7 $$2INSPIRE$$abaryon: hadron spectroscopy
000594453 650_7 $$2INSPIRE$$abaryon: heavy
000594453 650_7 $$2INSPIRE$$acharm
000594453 650_7 $$2INSPIRE$$abottom
000594453 650_7 $$2INSPIRE$$aHQET model
000594453 650_7 $$2INSPIRE$$abaryon: wave function
000594453 650_7 $$2INSPIRE$$aspin
000594453 650_7 $$2INSPIRE$$ainvariance: Lorentz
000594453 650_7 $$2INSPIRE$$aneutral current: flavor changing
000594453 650_7 $$2INSPIRE$$abaryon: semileptonic decay
000594453 650_7 $$2INSPIRE$$asemileptonic decay: baryon
000594453 650_7 $$2INSPIRE$$abaryon: nonleptonic decay
000594453 650_7 $$2INSPIRE$$anonleptonic decay: baryon
000594453 650_7 $$2INSPIRE$$adecay: amplitude analysis
000594453 650_7 $$2INSPIRE$$aamplitude analysis: decay
000594453 650_7 $$2INSPIRE$$aform factor
000594453 650_7 $$2INSPIRE$$asum rule
000594453 650_7 $$2INSPIRE$$apolarization: effect
000594453 650_7 $$2INSPIRE$$aeffect: polarization
000594453 650_7 $$2INSPIRE$$abaryon: lifetime
000594453 650_7 $$2INSPIRE$$abaryon: branching ratio
000594453 650_7 $$2INSPIRE$$aangular distribution
000594453 650_7 $$2INSPIRE$$abaryon: radiative decay
000594453 650_7 $$2INSPIRE$$aradiative decay: baryon
000594453 650_7 $$2INSPIRE$$acurrent algebra
000594453 650_7 $$2INSPIRE$$anumerical calculations: interpretation of experiments
000594453 650_7 $$2INSPIRE$$abibliography
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000594453 7001_ $$aKramer, M.$$b1
000594453 7001_ $$aPirjol, D.$$b2
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