All existing experimental evidence of the bound state nature of the X(3872) relies on considering its decay products with a finite experimental spectral mass resolution which is typically Delta m >= 2 MeV and much larger than its alleged binding energy, Bx = 0.00(18) MeV. On the other hand, there is a neat cancellation in the 1(++) channel for the invariant D (D) over bar* mass around the threshold between the continuum and bound state contribution. We discuss the impact of this effect for X(3872) at finite temperature, in prompt production in pp collisions data with a finite P T or the lineshapes of specific production experiments of exotic states involving triangle singularities.
机构:
Grupo de Física Nuclear and Instituto Universitario de Física Fundamental y Matemáticas (IUFFyM), Universidad de SalamancaGrupo de Física Nuclear and Instituto Universitario de Física Fundamental y Matemáticas (IUFFyM), Universidad de Salamanca
Pablo GOrtega
Enrique Ruiz Arriola
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机构:
Departamento de Física Atómica, Molecular y Nuclear and Instituto Carlos I de Física Teórica y Computacional, Universidad deGrupo de Física Nuclear and Instituto Universitario de Física Fundamental y Matemáticas (IUFFyM), Universidad de Salamanca
机构:
Guangdong Provincial Key Laboratory of Nuclear Science,Institute of Quantum Matter,South China Normal University
Guangdong-Hong Kong Joint Laboratory of Quantum Matter,Southern Nuclear Science Computing Center,South China Normal University
Theoretical Physics Center for Science Facilities,Institute of High Energy Physics,Chinese Academy of SciencesGuangdong Provincial Key Laboratory of Nuclear Science,Institute of Quantum Matter,South China Normal University