arXiv · hep-ph/0108074
Probing for New Physics in Polarized $Λ_b$ decays at the Z
Abstract
Polarized $Λ_b \to Λγ$ decays at the Z pole are shown to be well suited for probing a large variety of New Physics effects. A new observable is proposed, the angular asymmetry between the $Λ_b$ spin and photon momentum, which is sensitive to the relative strengths of the opposite chirality and Standard Model chirality $b \to s γ$ dipole operators. Combination with the $Λ$ decay polarization asymmetry and comparison with the $Λ_b$ polarization extracted from semileptonic decays allows important tests of the $V-A$ structure of the Standard Model. Modifications of the rates and angular asymmetries which arise at next-to-leading order are discussed. Measurements for $Λ_b \to Λγ$ and the CP conjugate mode, with branching ratios of a few times $10^{-5}$, are shown to be sensitive to non-standard sources of CP violation in the $Λ_b \to Λγ$ matrix element. Form factor relations for heavy-to-light baryon decays are derived in the large energy limit, which are of general interest.
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G. Hiller, A. Kagan. 2002-01-29. Probing for New Physics in Polarized $Λ_b$ decays at the Z. https://doi.org/10.1103/physrevd.65.074038
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