在SIS能量下重离子碰撞中矢量介子的介质性质对双轻子产生的影响

M. Cozma, E. Santini, C. Fuchs, A. Faessler, B. Martemyanov, M. Krivoruchenko
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引用次数: 0

摘要

在重离子碰撞的极端条件下,双轻子代表了一种独特的核物质探测器。它们允许在不同密度和温度下研究介子的性质,如质量和衰变宽度。到目前为止,在双轻子产生的Tubingen模型中,通过允许质量的密度依赖(Brown-Rho标度)以及介子衰变宽度对同一变量的特殊依赖,已经解释了核介质中介子性质的改变。我们利用扩展向量介子优势(eVMD)模型,通过计算中介子谱函数来提取核物质中的介子性质。计算了C+C在1.0和2.0 AGeV下的双轻子谱,并与前人的结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of In-medium properties of vector mesons on dilepton production in heavy ion collisions at SIS energies
Dileptons represent a unique probe for nuclear matter under extreme conditions reached in heavy ion collisions. They allow the study of meson properties, like mass and decay width, at various density and temperature regimes. Up to now, in the Tubingen model for dilepton production, modification of meson properties in nuclear medium has been accounted for by allowing a density dependence of the mass (Brown-Rho scaling) together with an ad hoc dependence of the meson decay widths on the same variable. We use the extended vector meson dominance (eVMD) model to extract meson properties in nuclear matter by computing the in-medium meson spectral functions. Dilepton spectra for C+C at 1.0 and 2.0 AGeV are calculated and compared with previous results.
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