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Confirming the molecular nature of the Z_b(10610) and the Z_b(10650)

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arxiv 1301.6461 v2 pith:E64MOCO7 submitted 2013-01-28 hep-ph hep-ex

Confirming the molecular nature of the Z_b(10610) and the Z_b(10650)

classification hep-ph hep-ex
keywords statesgammamolecularnaturedecaysorderupsilonaddition
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The decays of the $Z_b(10610)$ and the $Z_b(10650)$ to $\Upsilon(nS)\pi$, $h_b(mP)\pi$ and $\chi_{bJ}(mP)\gamma$ ($n=1,2,3$, $m=1,2$ and $J=0,1,2$) are investigated within a nonrelativistic effective field theory. It is argued that, while the decays to $\Upsilon(nS) \pi$ suffer from potentially large higher order corrections, the $P$-wave transitions of the $Z_b$ states offer the best possibility to confirm the nature of the $Z_b$ states as molecular states and to further study their properties. We give nontrivial and parameter-free predictions for the ratios of various partial widths for final states with $h_b(mP)\pi$ and $\chi_{bJ}(mP)\gamma$. In addition, the branching fractions for the neutral $Z_b$-states to $\chi_{bJ}\gamma$ are predicted to be of order $10^{-4}$--$10^{-3}$. This provides a fine test of the molecular nature in future high-luminosity experiments.

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