论文标题
热光子的最终源
Baryonic Sources of Thermal Photons
论文作者
论文摘要
光子的热辐射和hadronic物质的障碍者在理解高能重型离子碰撞中电磁发射光谱方面起着至关重要的作用。特别是,即使在巴属化学势很小的对撞机能量,巴里子和抗巴里子也是电磁辐射的强催化剂。在这里,我们对$π$ - 和$ω$ -Meson诱导的反应进行了系统分析。相互作用是基于有效的Hadronic Lagrangians,其中参数受到真空衰减分支和散射数据的经验信息的定量约束,并且通过适当的正则化程序来维持规格不变性。热发射速率是使用动力学理论计算的,但可以直接与使用Hadronic多体理论进行比较。与文献中现有计算的比较揭示了我们新确定的贡献相当重要。
Thermal radiation of photons and dileptons from hadronic matter plays an essential role in understanding electromagnetic emission spectra in high-energy heavy-ion collisions. In particular, baryons and anti-baryons have been found to be strong catalysts for electromagnetic radiation, even at collider energies where the baryon chemical potential is small. Here, we conduct a systematic analysis of $π$- and $ω$-meson-induced reactions off a large set of baryon states. The interactions are based on effective hadronic Lagrangians where the parameters are quantitatively constrained by empirical information from vacuum decay branchings and scattering data, and gauge invariance is maintained by suitable regularization procedures. The thermal emission rates are computed using kinetic theory but can be directly compared to previous calculations using hadronic many-body theory. The comparison to existing calculations in the literature reveals our newly identified contributions to be rather significant.