论文标题
旋转和电动黑洞的鹰射线辐射的强发对应关系
Hadronization correspondence of Hawking-Unruh radiation from rotating and electrically charged black holes
论文作者
论文摘要
假定旋转,电荷和电荷的旋转黑洞与高能物理学中的强发化的鹰射线辐射机制之间提出的对应关系。这使我们能够确定重型离子碰撞的良好冻结参数。此外,发现黑洞的热力学类似于高能碰撞。我们还引入了一种关系,表达了角动量的依赖性和从旋转黑洞对化学电位的角度速度的依赖性。与用于电荷黑色孔的相位图相当一致的新型相图,用于旋转,电荷和电荷旋转黑洞,并且与统计热模型和高能实验绘制的相图相当一致。此外,我们对冻结条件的估计$ \ langle e \ rangle/\ langle n \ rangle $和$ s/t^3 $与在强调过程中确定的估计非常吻合,尤其是在$μ\ leq 0.3 $ gev中。
The proposed correspondence between the Hawking-Unruh radiation mechanism in rotating, electrically-charged and electrically-charged-rotating black holes and the hadronization in high-energy physics is assumed. This allows us to determine the well-profound freezeout parameters of the heavy-ion collisions. Furthermore, black holes thermodynamics is found analogical to that of the high-energy collisions. We also introduce a relation expressing the dependence of the angular momentum and the angular velocity deduced from rotating black holes on the chemical potential. The novel phase diagram for rotating, electrically-charged and electrically-charged-rotating black holes are found in an excellent agreement with the phase diagrams drawn for electrically-charged black holes and also with the ones mapped out from the statistical thermal models and the high-energy experiments. Moreover, our estimations for the freezeout conditions $\langle E\rangle/\langle N\rangle$ and $s/T^3$ are in excellent good agreement with the ones determined from the hadronization process, especially at $μ\leq 0.3$ GeV.