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高能物理 - 现象学

arXiv:1403.3541 (hep-ph)
[提交于 2014年3月14日 ]

标题: 高能碰撞中的霍金-乌鲁克强子化与奇异性产生

标题: Hawking-Unruh Hadronization and Strangeness Production in High Energy Collisions

Authors:P. Castorina, H. Satz
摘要: The thermal multihadron production observed in different high energy collisions poses many basic problems: why do even elementary, $e^+e^-$ and hadron-hadron, collisions show thermal behaviour? Why is there in such interactions a suppression of strange particle production? Why does the strangeness suppression almost disappear in relativistic heavy ion collisions? Why in these collisions is the thermalization time less than $\simeq 0.5$ fm/c? We show that the recently proposed mechanism of thermal hadron production through Hawking-Unruh radiation can naturally answer the previous questions. Indeed, the interpretation of quark- antiquark pairs production, by the sequential string breaking, as tunneling through the event horizon of colour confinement leads to thermal behavior with a universal temperature, $T \simeq 170$ Mev,related to the quark acceleration, a, by $T=a/2\pi$. The resulting temperature depends on the quark mass and then on the content of the produced hadrons, causing a deviation from full equilibrium and hence a suppression of strange particle production in elementary collisions. In nucleus-nucleus collisions, where the quark density is much bigger, one has to introduce an average temperature (acceleration) which dilutes the quark mass effect and the strangeness suppression almost disappears.
摘要: The thermal multihadron production observed in different high energy collisions poses many basic problems: why do even elementary, $e^+e^-$ and hadron-hadron, collisions show thermal behaviour? Why is there in such interactions a suppression of strange particle production? Why does the strangeness suppression almost disappear in relativistic heavy ion collisions? Why in these collisions is the thermalization time less than $\simeq 0.5$ fm/c? We show that the recently proposed mechanism of thermal hadron production through Hawking-Unruh radiation can naturally answer the previous questions. Indeed, the interpretation of quark- antiquark pairs production, by the sequential string breaking, as tunneling through the event horizon of colour confinement leads to thermal behavior with a universal temperature, $T \simeq 170$ Mev,related to the quark acceleration, a, by $T=a/2\pi$. The resulting temperature depends on the quark mass and then on the content of the produced hadrons, causing a deviation from full equilibrium and hence a suppression of strange particle production in elementary collisions. In nucleus-nucleus collisions, where the quark density is much bigger, one has to introduce an average temperature (acceleration) which dilutes the quark mass effect and the strangeness suppression almost disappears.
评论: 对《先进高能物理》特刊的贡献,标题为“量子引力和 exotic 量子场论效应的实验检验”
主题: 高能物理 - 现象学 (hep-ph) ; 核理论 (nucl-th)
引用方式: arXiv:1403.3541 [hep-ph]
  (或者 arXiv:1403.3541v1 [hep-ph] 对于此版本)
  https://doi.org/10.48550/arXiv.1403.3541
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来自: Paolo Castorina [查看电子邮件]
[v1] 星期五, 2014 年 3 月 14 日 11:46:30 UTC (13 KB)
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