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A double-kaonic nuclear system, K − K − pp, to be formed in pp collisions

机译:pp碰撞中将形成双钾原子核系统K- K- pp

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Based on the idea that the simplest double- $bar{K}$ nuclear cluster, K − K − pp, can be produced in the p + p → K + + K + + Λ* + Λ* →K + + K + + K − K − pp reaction, where Λ* = Λ(1405) is a quasi-bound state K − p, we have calculated the differential cross sections for this process and found out that a peak of K − K − pp dominates in the mass spectrum when the cluster is a deeply bound and dense system, helped by a very large momentum transfer Q ∼ 1.8 MeV/c. The appropriate incident proton energy for this process is around 7 GeV. We found that, the deeper and denser the bound system is, the larger its population becomes. The K −-K − repulsion inside K − K − pp is shown to give only a small change on the bound-state structure and the cross section.
机译:根据这样的想法,可以在p + p→K + + K +中产生最简单的双$ bar {K} $核簇K − K- pp +Λ* +Λ* →K + + K + + K- K- pp反应,其中Λ * =Λ(1405)是准束缚状态K- p,我们计算出该过程的微分截面,发现峰K- K-<当团簇是一个深约束的密集系统时,pp在质谱中占主导地位,这是由于很大的动量传递Q〜1.8 MeV / c所致。该过程合适的入射质子能量约为7 GeV。我们发现,绑定系统越深和越密集,其种群就会变得越大。示出了在K- K- pp内的K- -K-斥力在结合态结构和截面上仅产生很小的变化。

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