${{\mathit T}_{{{c c {{\overline{\mathit c}}} {{\overline{\mathit c}}}}}}{(6900)}^{0}}$ WIDTH

INSPIRE   JSON  (beta) PDGID:
M268W
M268W
VALUE (MeV) DOCUMENT ID TECN  COMMENT
$\bf{ 161 \pm26}$ OUR AVERAGE
$191$ ${}^{+66}_{-49}$ ${}^{+25}_{-17}$ 1
HAYRAPETYAN
2024
 
CMS ${{\mathit p}}$ ${{\mathit p}}$ $\rightarrow$ ${{\mathit J / \psi}}{{\mathit J / \psi}}{{\mathit X}}$
$150$ $\pm30$ $\pm10$ 2
AAD
2023BL
 
ATLS ${{\mathit p}}$ ${{\mathit p}}$ $\rightarrow$ ${{\mathit J / \psi}}{{\mathit J / \psi}}{{\mathit X}}$
$168$ $\pm33$ $\pm69$ 3
AAIJ
2020AY
 
LHCB ${{\mathit p}}$ ${{\mathit p}}$ $\rightarrow$ ${{\mathit J / \psi}}{{\mathit J / \psi}}{{\mathit X}}$
• • We do not use the following data for averages, fits, limits, etc. • •
$510$ $\pm170$ ${}^{+110}_{-100}$ 4
AAD
2023BL
 
ATLS ${{\mathit p}}$ ${{\mathit p}}$ $\rightarrow$ ${{\mathit J / \psi}}{{\mathit \psi}{(2S)}}{{\mathit X}}$
1  In a model with three resonances described by interfering relativistic Breit-Wigner functions above background from non-resonant single and double parton scattering and a threshold enhancement.
2  In a model with two resonances, with the ${{\mathit T}_{{{c c {{\overline{\mathit c}}} {{\overline{\mathit c}}}}}}{(6600)}}$ interfering with single parton scattering, and a non-interfering ${{\mathit T}_{{{c c {{\overline{\mathit c}}} {{\overline{\mathit c}}}}}}{(6900)}}$.
3  In a model where the broad structure above threshold interferes with non-resonant single parton scattering. Without interference the width is $80$ $\pm38$ MeV.
4  Assuming a single resonance (could be another state). A 3$\sigma $ signal is observed for an additional resonance with mass $7220$ $\pm30$ ${}^{+10}_{-40}$ MeV and width $90$ $\pm60$ ${}^{+60}_{-50}$ MeV.
References