论文标题

磁场背景中重夸金族的热力学

Thermodynamics of heavy quarkonium in magnetic field background

论文作者

Zhou, Jing, Chen, Xun, Zhao, Yan-Qing, Ping, Jialun

论文摘要

我们研究了爱因斯坦 - 马克斯韦尔(EM)和爱因斯坦 - 马克斯韦尔 - 迪拉顿(EMD)模型中磁场对重夸克 - 易药对的影响。计算了重夸克的间距离,自由能,熵,结合能和内部能量。发现自由能抑制,熵随着磁场$ b $的增加而迅速增加。当增加磁场时,结合能在较小的距离下消失,这表明夸克 - 易夸克对在较小的距离下解离。由自由能和熵组成的内部能量将在不断变化的磁场的较大分离距离下增加。在EM和EMD模型中,这些结论都是一致的。此外,我们还发现,与EMD模型的横向方向相比,Quarkonium在平行方向上的离解能力更容易,但是在EM模型中,结论是相反的。晶格结果有利于EMD模型。此外,只有在EMD模型中才能实现库仑(Coulomb-Plus)线性电势(康奈尔电位)。因此,事实证明,DILATON场在全息模型中很重要。最后,我们还表明,在EMD模型中,单个夸克的自由能,熵和内部能具有磁场的存在。

We study the effect of magnetic field on heavy quark-antiquark pair in both Einstein-Maxwell(EM) and Einstein-Maxwell-Dilaton(EMD) model. The interquark distance, free energy, entropy, binding energy and internal energy of the heavy quarkonium are calculated. It is found that the free energy suppresses and the entropy increases quickly with the increase of the magnetic field $B$. The binding energy vanishes at smaller distance when increasing the magnetic field, which indicates the quark-antiquark pair dissociates at smaller distance. The internal energy which consists of free energy and entropy will increase at large separating distance for non-vanishing magnetic field. These conclusions are consistent both in the EM and EMD model. Moreover, we also find that the quarkonium will dissociate easier in the parallel direction than that in the transverse direction for EMD model, but the conclusion is opposite in EM model. Lattice results are in favor of EMD model. Besides, a Coulomb-plus-linear potential(Cornell potential) can be realized only in EMD model. Thus, a dilaton field is proved to be important in holographic model. Finally, we also show that the free energy, entropy and internal energy of a single quark in EMD model with the presence of magnetic field.

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