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Excited heavy meson decays to light vector mesons: implications for spectroscopy

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arxiv 1810.04492 v2 pith:72TWISC2 submitted 2018-10-10 hep-ph hep-ex

classification hep-phhep-ex
keywords mesonsexcitedheavylightmesonvectordecayseffective
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abstract

We analyze strong decays of excited charmed and beauty mesons into a light vector meson, exploiting the effective field theory based on heavy quark (HQ) symmetries for heavy mesons, and on the hidden gauge symmetry to incorporate light vector mesons. HQ symmetries allow to classify the heavy mesons in spin doublets, and to relate decays of excited states. We build effective Lagrangian terms governing the ${\cal H}_i \to P^{(*)} V$ modes, with ${\cal H}_i$ an excited $s$, $p$, $d$ and $f$-wave heavy-light quark meson, $P,\,P^*$ the lowest-lying $J^P=(0^-,\,1^-)$ heavy-light mesons, and V a light vector meson. Predictions are provided for ratios of decay widths that are independent of the strong couplings in the effective Lagrangian terms. A classification of the newly observed heavy-light mesons is proposed.

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  1. Radially Excited Bottom Mesons in Heavy Quark Effective Theory

    hep-ph 2025-06 conditional novelty 3.0 of 10

    HQET flavor symmetry is used to predict n=3 bottom and bottom-strange meson masses, their strong decay widths in terms of couplings, coupling upper bounds, and n=4 Regge extrapolations.

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