期刊
JOURNAL OF HIGH ENERGY PHYSICS
卷 -, 期 4, 页码 -出版社
SPRINGER
DOI: 10.1007/JHEP04(2021)051
关键词
Phenomenological Models
资金
- Russian Science Foundation [16-12-10414]
The infinite chain of transitions of one pair of mesons into another pair can produce bound states and resonances in both channels, even without interactions inside the channels. Resonances called channel-coupling (CC) resonances may occur in meson-baryon channels as well. A new mechanism involving the rearrangement of confining strings inside each channel, known as the recoupling mechanism, is proposed for these transitions.
The infinite chain of transitions of one pair of mesons (channel I) into another pair of mesons (channel II) can produce bound states and resonances in both channels even if no interactions inside channels exist. These resonances which can occur also in meson-baryon channels are called channel-coupling (CC) resonances. A new mechanism of CC resonances is proposed where transitions occur due to a rearrangement of confining strings inside each channel - the recoupling mechanism. The amplitude of this recoupling mechanism is expressed via overlap integrals of the wave functions of participating mesons (baryons). The explicit calculation with the known wave functions yields the peak at E = 4.12 GeV for the transitions J/psi+phi <-> Ds+D-s*, which can be associated with chi(c1) (4140), and a narrow peak at 3.98 GeV with the width 10 MeV for the transitions D-s(-) + D-0(*) <-> J/psi+K*(-), which can be associated with th recently discovered Z(cs) (3985).
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