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Determination of the Spin and Parity of the Z(c)(3900)

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Amer Phyical

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The spin and parity of the Z(c)(3900)(+/-) state are determined to be J(P) = 1(+) with a statistical significance larger than 7 sigma over other quantum numbers in a partial wave analysis of the process e(+)e(-) -> pi(+)pi(-) J/psi We use a data sample of 1.92 fb(-1) accumulated at root s = 4.23 and 4.26 GeV with the BESIII experiment. When parametrizing the Z(c)(3900)(+/-) with a Flatte-like formula, we determine its pole mass M-pole = (3881.2 +/- 4.2(stat) +/- 52.7(syst)) MeV/c(2) and pole width Gamma(pole) = (51.8 +/- 4.6(stat) +/- 36.0(syst)) MeV. We also measure cross sections for the process e(+)e(-) -> Z(c)(3900)(+)pi(-) + c.c. -> J/psi pi(+)pi(-) and determine an upper limit at the 90% confidence level for the process e(+)e(-) -> Z(c)(4020)(+)pi(-) + c.c. -> J/psi pi(+)pi(-).

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Konusu

Physics, Resonance, Decay, Sigma, Germanium compounds, Poles, Confidence levels, Data sample, Partial wave analysis, Pole mass, Quantum numbers, Statistical significance, Upper limits, Article, Parity, Quantum theory

Alıntı

Ablikim, M. vd. (2017). ''Determination of the Spin and Parity of the Z(c)(3900)''. Physical Review Letters, 119(7).

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