Study of Photons Emission Rate of Quark-Antiquark at Higher Energy

E. Ahmed, Hadi J. M. Al-Agealy, Nada Farhan Kadhim
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引用次数: 1

Abstract

In this paper, the dynamic of quark and anti-quark interaction has been used to study the production of photons in the annihilation process based on the theory of chromodynamic. The rate of the photon is to be calculated for charm and anti-strange interaction c→γg system with critical temperature 113 and 130 MeV and photon energy GeV/c. Here the critical temperature, strength coupling and photons energy are assumed to be affected dramatically on the rate of photons emission of state interaction c, which can form gluon possible structures and photon emission state. The decreased photons emission yields with increased strength couple of quarks reaction due to increase critical temperature from 113 MeV to 130 MeV were predicted. We can be found less difference in photons rate for the two different critical temperatures and strength coupling.
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高能夸克-反夸克光子发射速率的研究
本文基于色动力学理论,利用夸克和反夸克相互作用的动力学,研究了湮灭过程中光子的产生。计算了临界温度为113和130 MeV、光子能量为GeV/c的粲粲和反奇异相互作用c→γg体系的光子速率。假设临界温度、耦合强度和光子能量对态相互作用c的光子发射速率有显著影响,从而形成胶子可能结构和光子发射态。预测了临界温度从113 MeV提高到130 MeV,随着夸克反应偶对强度的增加,光子发射产率降低。我们发现,在两种不同的临界温度和强度耦合下,光子速率的差异较小。
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