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$Σ^0$ production in proton nucleus collisions near threshold

Published 15 Nov 2017 in nucl-ex | (1711.05559v1)

Abstract: The production of $\Sigma{0}$ baryons in the nuclear reaction p (3.5 GeV) + Nb (corresponding to $\sqrt{s_{NN}}=3.18$ GeV) is studied with the detector set-up HADES at GSI, Darmstadt. $\Sigma{0}$s were identified via the decay $\Sigma{0} \rightarrow \Lambda \gamma$ with subsequent decays $\Lambda \rightarrow p \pi{-}$ in coincidence with a $e{+}e{-}$ pair from either external ($\gamma \rightarrow e{+} e{-}$) or internal (Dalitz decay $\gamma{*}\rightarrow e{+} e{-}$) gamma conversions. The differential $\Sigma0$ cross section integrated over the detector acceptance, i.e. the rapidity interval $0.5 < y < 1.1$, has been extracted as $\Delta\sigma_{\Sigma{0}} = 2.3 \pm (0.2){stat} \pm \left({+0.6}_{-0.6}\right){sys} \pm (0.2){norm}$ mb, yielding the inclusive production cross section in full phase space $\sigma{total}_{\Sigma{0}} = 5.8 \pm (0.5){stat} \pm \left({+1.4}_{-1.4}\right){sys} \pm (0.6){norm} \pm (1.7){extrapol}$ mb by averaging over different extrapolation methods. The $\Lambda_{all}$/$\Sigma{0}$ ratio within the HADES acceptance is equal to 2.3 $\pm$ $(0.2){stat}$ $\pm$ $({+0.6}_{-0.6}){sys}$. The obtained rapidity and momentum distributions are compared to transport model calculations. The $\Sigma{0}$ yield agrees with the statistical model of particle production in nuclear reactions.

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