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Delayed versus accelerated quarkonium formation in a magnetic field

机译:延迟与磁场中的加速Quarkonium形成

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Formation time of heavy quarkonia in a homogeneous magnetic field is analyzed by using a phenomenological ansatz of the vector current correlator. Because the existence of a magnetic field mixes vector quarkonia (J/ψ, ψ') and their pseudoscalar partners (ηc, η'_c), the properties of the quarkonia can be modified through such a spin mixing. This means that the formation time of quarkonia is also changed by the magnetic field. We show the formation time of vector quarkonia is delayed by an idealized constant magnetic field, where the formation time of the excited state becomes longer than that of the ground state. As a more realistic situation in heavy-ion collisions, effects by a time-dependent magnetic field are also discussed, where delayed formation of J/ψ and ψ' and very early formation of ηc and η'_c are found.
机译:通过使用载体电流相关器的现象学ansatz分析均匀磁场中重Quarkonia的形成时间。 因为存在磁场混合载体Quarkonia(J /ψ,ψ')及其伪张相伴侣(ηc,η'_c),可以通过这种旋转混合来改变Quarkonia的性质。 这意味着Quarkonia的形成时间也被磁场改变。 我们展示了向量的形成时间,Quarkonia被理想化的恒定磁场延迟,其中激发状态的形成时间变得长于地位的形成时间。 作为重离子碰撞中的更现实的情况,还讨论了通过时间依赖磁场的影响,其中找到了延迟形成了J /ψ和ψ'和非常早期的ηc和η_c。

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