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Kaon photoproduction at SAPHIR for photon energies up to 2.6 GeV

机译:在SAPHIR上进行Kaon光生产,可获取高达2.6 GeV的光子能量

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The measurement of photoproduction reactions with open strangeness is one of the central issues of the physics program at SAPHIR. We report here on the analysis of the reactions yp -> K(+)Sigma(0) and yp -> K(0)Sigma(+) in the photon energy range between threshold and 2.6 GeV using data taken in the years 1997-1998. The measured cross sections suggest contributions from resonance production for both reactions. Coupled channel analysis of the two mentioned isospin channels together with the reaction yp -> K(+)Lambda also measured by SAPHIR, should help to extract resonance informations in these reactions. Upcoming data from different experiments on the photoproduction of kaon-hyperon pairs on the neutron and electroproduction of strangeness, including cross sections and polarization observables, will even improve this situation. However, for an initial discussion of what one could learn from strangeness production in the future final data for the reaction yp -> K(+)Sigma(0) the preliminary SAPHIR results for the reaction yp -> K(0)Sigma(+) are compared here with an isobar model designed for the previous SAPHIR data. The latter had less energy and a smaller kaon production angle resolution than new SAPHIR data and delivered data for yp -> K(+)A and yp -> K(+)Sigma(0) only up to 2.0 GeV and for yp -> K(0)Sigma(+) up to 1.55 GeV. The new data show clearly that such a model must be refined to describe the new SAPHIR data, because these data are more sensitive to background and resonance contributions. (c) 2005 Elsevier B.V. All rights reserved.
机译:带有开放性的光生反应的测量是SAPHIR物理计划的核心问题之一。我们在这里报告了使用yp-> K(+)Sigma(0)和yp-> K(0)Sigma(+)在阈值和2.6 GeV之间的光子能量范围内的分析,该分析使用的是1997- 1998年。测量的横截面表明两个反应均由共振产生。同样通过SAPHIR测量的两个提到的同位旋通道的耦合通道分析以及反应yp-> K(+)Lambda,应该有助于提取这些反应的共振信息。来自不同实验的关于中子上的钾-质子对的光产生和奇异的电产生的即将到来的数据,包括截面和可观察到的极化,甚至将改善这种情况。但是,为了初步讨论在将来的最终数据yp-> K(+)Sigma(0)中可以从陌生化生产中学到什么,反应yp-> K(0)Sigma(+)的初步SAPHIR结果)在此与为先前SAPHIR数据设计的等压线模型进行了比较。后者比新的SAPHIR数据具有更少的能量和更小的kaon产生角分辨率,并且对于yp-> K(+)A和yp-> K(+)Sigma(0)传递的数据仅达到2.0 GeV,对于yp-> K(0)Sigma(+)高达1.55 GeV。新数据清楚地表明,必须改进此类模型以描述新的SAPHIR数据,因为这些数据对背景和共振影响更为敏感。 (c)2005 Elsevier B.V.保留所有权利。

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