K(1690) signal from COMPASS as a strange hybrid state
Bing Chen, Ri-Qing Qian, Xiang Liu
Abstract
A pseudoscalar resonance structure, denoted as the K(1690), was recently discovered by the COMPASS Collaboration in the scattering reaction K-+p K-π-π++p. If the K(1690) is a genuine state, there are three observed pseudoscalar strange mesons, namely the K(1460), K(1690), and K(1830), in the 1.0-2.0 GeV region. However, within the conventional quark model, only the 21S0 and 31S0 strange meson states are expected in this energy region. Therefore, at least one of these states should be interpreted as an exotic candidate. In this work, we study the spectrum of strange mesons systematically, and find that the K(1460) and K(1830) are good candidates of 21S0 and 31S0 strange mesons, respectively. A further investigation of their strong decays also supports this assignment. Furthermore, we note that the production mechanism of the K(1690) is similar to that of the π1(1600), which has been widely regarded as a hybrid meson candidate. We investigate the strong decays of the K(1690) within a constituent gluon model by treating it as a 0- strange hybrid meson and find that the results support the K(1690) as a hybrid state. Finally, we identify several important decay modes of the K(1690) that may be used in future experiments to test whether it contains the n1S0 (n=2 and 3) sq component. We also suggest BESIII to search for the K(1690) state through the J/ψ K K(1690) KK0(1430)π KKππ process.
Create a lesson
Related papers
Exclusive photoproduction of vector toponium within the color dipole picture
Victor P. Goncalves, Bruno D. Moreira, Haimon Trebien
Solar capture and annihilation of fermionic and scalar dark matter motivated by the LUX-ZEPLIN high-recoil candidate
Antonio Capolupo, Gabriele Pisacane, Raoul Serao
Interplay between decoupling and non-decoupling effective field theories in electroweak phase transitions
Katsuya Hashino, Daiki Ueda
Environment-dependent mass splitting to suppress solar capture in the inelastic-doublet interpretation of the LZ event
Sudhakantha Girmohanta, Tae Hyun Jung
Analytic Methods for Perturbative Quantum Chromodynamics
Fabian Wunder
Twist-3 T-Even TMD Distributions in Quark Target Model
Siddhesh Padval, Anuradha Misra, Abhirup Karmakar et al.