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DIANA Collaboration

Publications and source records attributed to DIANA Collaboration.

2 recordsLinked to original sources

Angular distribution in s-channel formation of the pentaquark $Θ^+$ baryon

Using the DIANA data on the charge-exchange reaction $K^+n \rightarrow pK^0$ on a bound neutron, in which the s-channel formation of the pentaquark baryon $Θ^+(1538)$ has been observed, we analyze the dependence of the background-subtracted $Θ^+ \rightarrow pK^0$ signal on the $K^0$ emission angle in the $pK^0$ rest frame. In order to describe the observed $\cosΘ_K^\mathrm{cms}$ distribution, invoking the interference between the nonresonant s-wave and the $Θ^+$-mediated higher-wave contributions to the amplitude of the charge-exchange reaction is required at a 2.8$σ$ level. The spin--parity assignment of 1/2$^-$ for the $Θ^+$ baryon is ruled out at a statistical level of 2.9 standard deviations. A physically-meaningful selection in $\cosΘ_K^\mathrm{cms}$ based on the observed angular dependence of the $Θ^+ \rightarrow pK^0$ signal allows to boost the statistical significance of the signal up to 7.1 standard deviations. This is far in excess of previously reported signals and renders the $Θ^+$ existence more credible.

hep-ex

Observation of a narrow baryon resonance with positive strangeness formed in $K^+$Xe collisions

The charge-exchange reaction K^+ Xe --> K^0 p Xe' is investigated using the data of the DIANA experiment. The distribution of the pK^0 effective mass shows a prominent enhancement near 1538 MeV formed by \sim 80 events above the background, whose width is consistent with being entirely due to the experimental resolution. Under the selections based on a simulation of K^+Xe collisions, the statistical significance of the signal reaches 5.5σ. We interpret this observation as strong evidence for formation of a pentaquark baryon with positive strangeness, Θ^+(uudd\bar{s}), in the charge-exchange reaction K^+ n --> K^0 p on a bound neutron. The mass of the Θ^+ baryon is measured as m(Θ^+) = 1538+-2 MeV. Using the ratio between the numbers of resonant and non-resonant charge-exchange events in the peak region, the intrinsic width of this baryon resonance is determined as Γ(Θ^+) = 0.34+-0.10 MeV.

nucl-ex