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In-medium nuclear interactions of low-energy hadrons

机译:低能强子的中核相互作用

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摘要

Exotic atoms provide a unique laboratory for studying strong interactions and nuclear medium effects at zero kinetic energy. Experimental and theoretical developments of the last decade in the study of exotic atoms and some related low-energy reactions are reviewed. The exotic atoms considered are of , and also the so far unobserved Ξ- atoms. The analysis of these atomic systems consists of fitting density-dependent optical potentials Vopt=t(ρ)ρ to comprehensive sets of data of strong-interaction level shifts, widths and yields across the periodic table. These provide information on the in-medium hadron–nucleon t matrix t(ρ) over a wide range of densities up to central nuclear densities. For pions, the review focuses on the extraction of the πN in-medium s-wave interaction from pionic atoms, which include also the deeply bound π- atomic states recently observed at GSI in isotopes of Sn and Pb. Also included are recent measurements at PSI of elastic scattering of π± on Si, Ca, Ni and Zr at 21.5 MeV. The experimental results are analyzed in the context of chirally motivated π-nuclear potentials, and the evidence for partial restoration of chiral symmetry in dense nuclear matter is critically discussed. For antikaons, we review the evidence from K- atoms, and also from low-energy K-p scattering and reaction data for and against a deep -nucleus potential of 150–200 MeV attraction at nuclear matter density. The case for relatively narrow deeply bound K- atomic states is made, essentially independent of the potential-depth issue. Recent experimental suggestions from KEK and DAΦNE (Frascati) for signals of -nuclear deeply bound states are reviewed, and dynamical models for calculating binding energies and widths of -nuclear states are discussed. For kaons we review the evidence, from K+ total and reaction cross section measurements at the AGS (BNL) on Li, C, Si and Ca at, for significant absorptivity of tKN(ρ) beyond that expected from within the impulse approximation. Attempts to explain the extra absorptivity for the relatively weak interaction of K mesons in terms of a hypothetical exotic S=+1 pentaquark Θ+ strength are reviewed. For antiprotons the exceptionally broad data base due to the recent results of the PS209 collaboration at CERN are analyzed, together with results of radiochemical experiments. We discuss the dependence of the phenomenological -nucleus interaction on the model adopted for the neutron density, showing how the neutron densities favored by our comprehensive analysis are compatible with densities from other sources, including our own analysis of pionic atoms. It is also shown how the strong absorptivity of the -nucleus interaction, which leads to the prediction of saturation of widths in deeply bound -atom states, also explains the observed saturation effects in low-energy annihilation on nuclei. For Σ hyperons we review the evidence, from continuum Σ- hypernuclear (π-,K+) spectra obtained recently at KEK on C, Si, Ni, In and Bi, for substantial repulsion in the Σ-nucleus interaction, and the relationship to the inner repulsion established earlier from the density-dependence analysis of Σ- atoms and by analyses of past (K-,π±) AGS experiments.
机译:外来原子为研究零动能下的强相互作用和核介质效应提供了一个独特的实验室。回顾了近十年来在外来原子研究和一些相关的低能反应方面的实验和理论进展。所考虑的外来原子是,还有到目前为止尚未观察到的Ξ-原子。这些原子系统的分析包括将依赖密度的光学势Vopt = t(ρ)ρ拟合到周期表中强相互作用能级位移,宽度和屈服的综合数据集。这些提供了在中等密度到中心核密度的中等强子-核子t矩阵t(ρ)的信息。对于介子,综述着重于从离子原子中提取πN介质中s波的相互作用,其中还包括最近在GSI的Sn和Pb同位素中观察到的深结合π原子态。还包括最近在PSI上在21.5 MeV下对Si,Ca,Ni和Zr上的π±弹性散射的测量。在手性激发的π-核势的背景下分析了实验结果,并严格讨论了在致密核物质中部分恢复手性对称性的证据。对于抗钾,我们回顾了来自K原子的证据,以及来自低能K-p散射和反应数据的证据,这些数据针对和反对在核物质密度下具有150-200 MeV吸引力的深核势。提出了相对窄的,深度结合的K原子态的情况,基本上与势深问题无关。综述了来自KEK和DAΦNE(Frascati)对-核深束缚态信号的最新实验建议,并讨论了用于计算-核深层结合能和宽度的动力学模型。对于钾离子,我们从AGS(BNL)在Li,C,Si和Ca处的A +(BNL)处的K +总和反应截面测量中,回顾了tKN(ρ)的显着吸收率超过脉冲近似值所预期的证据。审查了试图解释假想S = + 1五夸克Θ+强度相对较弱的K介子相互作用的尝试。对于反质子,由于欧洲核子研究中心PS209合作的最新成果以及放射化学实验的结果,分析了非常广泛的数据库。我们讨论了现象学-原子核相互作用对中子密度采用的模型的依赖性,显示了我们全面分析所偏爱的中子密度如何与其他来源的密度兼容,包括我们自己对离子原子的分析。还显示了-原子核相互作用的强吸收性如何导致对深键合的-原子态的宽度饱和的预测,也解释了在低能on灭中对原子核观察到的饱和效应。对于Σ超子,我们回顾了最近从KEK在C,Si,Ni,In和Bi上的KEK获得的连续Σ-超核(π-,K +)光谱中Σ-核相互作用的实质排斥以及与内排斥力是通过对Σ-原子的密度依赖性分析以及过去(K-,π±)AGS实验的分析建立的。

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