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Fully coupled-channel study of K~- pp resonance in a chiral SU(3)-based K~(bar)N potential

机译:Chiral Su(3)中K〜PP共振的完全耦合通道研究 - 基于K〜(棒)N潜力

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Nuclear systems with antikaons, so-called kaonic nuclei, have been a longstanding issue in strange nuclear physics and hadron physics, because they might have exotic nature; In particular, they could be a doorway to the dense matter due to the strong attraction between antikaon and nucleon. Among kaonic nuclei, the three-body system composed of two protons and a single K~-meson, K~-pp, is the most essential. In this article, we will report on the recent situation of K~-pp studies in both theoretical and experimental sides. Afterwards, we will explain our latest study of the K~-pp with a fully coupled-channel complex scaling method (Full ccCSM) using a chiral SU(3)-based KN(-πY) potential. In Full ccCSM, the K- pp is completely treated as a resonant state of a {formula} coupled-channel system. The energy dependence involved in the chiral potential is handled with a self-consistent calculation in which two extreme ansatzes are examined: field picture and particle picture. With our chiral SU(3)-based potential constrained by the precise data of kaonic hydrogen atom (SIDDHARTA experiment), the K~- pp resonance is obtained as a shallowly bound state measured from the KNN threshold with a narrow width, if the field picture is employed in the calculation: the binding energy is 14 - 28 MeV and the half value of the mesonic decay width is 8 - 15 MeV. On the other hand, if the particle picture is employed, it is found that the binding energy could be as large as about 50 MeV, even though such a chiral potential is used. Based on these results of Full ccCSM calculation, we have discussed on the possibility for kaonic nuclei to form a dense matter and on the latest experimental result reported by J-PARC E15 collaboration.
机译:核系统与antikaons,所谓kaonic核,一直在奇怪核物理与强子物理一个长期的问题,因为他们可能有异国情调的性质;特别是,他们可能是一个门口茂密的问题,由于antikaon和核子之间的强烈的吸引力。间kaonic核,三体系统由两个质子和单个K〜-meson,K〜-pp,是最重要的。在这篇文章中,我们将在K〜-pp研究在理论和实验两两侧的最近的情况汇报。随后,我们将解释我们的最新的K〜-pp的研究与使用手征SU(3)为基础的KN(-πY)的潜力完全耦合通道复比例法(全ccCSM)。完整ccCSM中,K- PP完全作为{公式}的谐振状态下处理联接通道系统。场图像和粒子图像:参与手性潜在的能源的依赖与自洽的计算,其中两个极限ansatzes被检查处理。与我们的手性SU(3)系由kaonic氢原子(悉达多实验)的精确数据约束势,K〜 - PP共振被获得为从KNN阈测量具有窄宽度的浅结合的状态下,如果场图象被用在计算:结合能为14 - 28兆电子伏特和介子衰变宽度为8的半值 - 15MeV的。在另一方面,如果使用粒子图像,可以发现的是,结合能可大到大约50兆电子伏,即使使用这样的手性的潜力。基于全ccCSM计算这些结果,我们对可能讨论了kaonic核形成致密的物质和最新的实验结果报告J-PARC E15协作。

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