arXiv · 1008.0203
Isospin Violation in X(3872): Explanation From a New Tetraquark Model
Abstract
New data for X(3872) production in B decays provide a separation between X production and decay, sharpen several experimental puzzles and impose serious constraints on all models. Both charged and neutral B decays produce a narrow neutral resonant state that decays to both J/ψρand J/ψω, while no charged resonances in the same multiplet are found. This suggests that the X is an isoscalar resonance whose production conserves isospin, while isospin is violated only in the decay by an electromagnetic interaction allowing the isospin-forbidden J/ψρdecay. A tetraquark isoscalar X model is proposed which agrees with all present data, conserves isospin in its production and breaks isospin only in an electromagnetic X(3872) --> J/ψρ^o decay. The narrow X decay width results from the tiny phase space available for the J/ψωdecay and enables competition with the electromagnetic isospin-forbidden J/ψρdecay which has much larger phase space. Experimental tests are proposed for this isospin production invariance.
Explore related subjects
Keep this discovery
Marek Karliner, Harry J. Lipkin. 2010-08-04. Isospin Violation in X(3872): Explanation From a New Tetraquark Model. https://arxiv.org/abs/1008.0203
Cite the original work for its findings. Save a collection to share your selection of sources.