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Vector mesons in strongly interacting matter

机译:强相互作用物质中的介子介子

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Properties of hadrons in strongly interacting matter provide a link between quantum chromodynamics in the strong coupling regime and experimental observables. QCD sum rules show that changes in chiral and higher-order condensates, partially associated with a restoration of chiral symmetry in the nuclear medium, will lead to significant changes in the low-energy spectrum of hadrons. Heavy-ion collisions and reactions with elementary probes have been used to extract experimental information on in-medium properties of hadrons. Results on the light vector mesons ??, e??”, and e???, are summarized and compared. Almost all experiments report a softening of the spectral functions with increases in width depending on the density and temperature of the hadronic environment. No evidence for mass shifts is found in majority of the experiments. Remaining inconsistencies among experimental results demonstrate the need for further measurements with higher statistics and inrceased acceptance in particular for low-momentum vector mesons.
机译:强子在强相互作用物质中的性质提供了强耦合状态下的量子色动力学与实验观察值之间的联系。 QCD求和规则显示,手性和高级冷凝物的变化与核介质中手性对称性的恢复部分相关,将导致强子的低能谱发生重大变化。重离子碰撞和与基本探针的反应已被用于提取有关强子的中等性质的实验信息。总结并比较了光向量介子??,e ??”和e ???的结果。几乎所有实验都报告说,随着强子环境的密度和温度的增加,光谱函数随着宽度的增加而减弱。在大多数实验中均未发现质量转移的证据。实验结果之间仍然存在不一致之处,这表明需要进行进一步的测量,以得到更高的统计数据,尤其是对于低动量矢量介子,人们的接受度将提高。

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