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首页> 外文期刊>Physical review, D >Electromagnetic spectral function and dilepton rate in a hot magnetized QCD medium
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Electromagnetic spectral function and dilepton rate in a hot magnetized QCD medium

机译:电磁谱功能和墨斗顿在热磁化QCD介质中的速率

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摘要

The dilepton production rate in a hot QCD medium is studied within an effective description of the medium in the presence of a magnetic field. This could be done by obtaining the one-loop self-energy of the photon due to the effective (quasi)quark loop at a finite temperature under an arbitrary external magnetic field while employing the real time formalism of thermal field theory. The effective quarks and gluons encode a hot QCD medium effective in terms of their respective effective fugacities. The magnetic field enters in the form of Landau level quantization, in the matter sector (quarks, antiquarks). The full Schwinger proper time propagator including all the Landau levels is considered for the quasiquarks while calculating the photon self-energy. The electromagnetic Debye screening (in terms of the self-energy) has been influenced by both the hot QCD medium effects and the magnetic field. Analogous results are also obtained from the semiclassical transport theory. The imaginary part of the photon self-energy function is obtained from the discontinuities of the self-energy across the unitary cuts that are also present at the zero magnetic field and the Landau cuts that are purely due to the magnetic field. The dilepton production rate is then obtained in terms of the product of electromagnetic spectral functions due to the quark loop and the lepton loop. The modifications of both the quarks/antiquarks as well as leptons in the presence of an arbitrary external magnetic field have been considered in the formalism. Significant enhancement of the low invariant mass dileptons due to the appearance of the Landau cuts in the electromagnetic spectral function at the finite external magnetic field has been observed. A substantial enhancement of the dilepton rate is also found when the equation of state effects are considered through the effective quarks/antiquraks.
机译:在诸如磁场存在的介质的有效描述中研究了热QCD介质中的Dilepton生产率。这可以通过在采用热场理论的实时形式主义的同时获得由于有限的外部磁场下的有效温度(准)夸克环,获得光子的单环自能来完成的。有效的夸克和胶合在各自的有效脱力条件方面编码了热QCD培养基。磁场以兰开线量化的形式进入,在物质部门(夸克,抗型夸克)。在计算光子自能的同时考虑Quasiquark的全舒武格适当的时间传播者,包括Quasiquark。电磁脱纸(在自能)的情况下受到热QCD中等效应和磁场的影响。类似结果也从半透明运输理论中获得。光子自能功能的虚部是从零磁场上的整体切口的自能的不连续性获得,该距离零磁场和纯粹由于磁场而纯粹的焊盘。然后,由于夸克循环和Lepton循环,在电磁谱函数的乘积方面获得了Dilepton生产率。在形式主义中考虑了在任意外部磁场存在下的夸克/古物场以及肝脏的修改。已经观察到由于Landau在有限外部磁场的电磁光谱功能中引起的低不变质量膨胀子的显着增强。当通过有效夸克/反气旋考虑状态效应的等式时,也发现了Dilepton率的大量提高。

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