论文标题
部分可观测时空混沌系统的无模型预测
Universal Energy Dependence of Measured Temperatures for Baryons Produced in Heavy-ion Collisions
论文作者
论文摘要
从重型离子碰撞中的巴里昂产生数据的数据中可以证明,存在一组可测量的功能,每种baryon类型都有一个,其指数取决于横向动量,直到检测到的所有碰撞能量的最大值范围从RHIC的低端到Cern LHC的高端cern LHC的高端。暗示的温度满足了与所有重子类型的碰撞能量中的扩展定律,这是新的发现。隐含自相似的热源。此外,它显示了缩放行为如何取决于中心。数据中的那些特征与使用重组模型的光和奇怪夸克的简单属性有关。进行$ ϕ $ MESON生产的预测,然后通过现有数据进行验证。
From the data on baryon production in heavy-ion collisions it is shown that a set of measurable functions exist, one for each baryon type, that depend exponentially on transverse momenta up to the maximum values detected for all collision energies ranging from the low end of RHIC BES to the high end of CERN LHC. The implied temperatures satisfy a scaling law in collision energy with a universal exponent for all baryon types which is the novel discovery. A self-similar thermal source is implied. Furthermore, it is shown how the scaling behavior depends on centralities. Those features in the data are related to simple properties of light and strange quarks by use of the recombination model. Prediction of $ϕ$ meson production is made and then verified by existing data.