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General structure of the neutral ρ meson self-energy and its spectral properties in a hot and dense magnetized medium

机译:中性ρ的一般结构在热和致密磁化介质中的中性ρmeson自能及其光谱特性

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The one-loop self-energy of the neutral ρ meson is obtained for the effective ρππ and ρNN interaction at finite temperature and density in the presence of a constant background magnetic field of arbitrary strength. In our approach, the eB-dependent vacuum part of the self-energy is extracted by means of dimensional regularization where the ultraviolet divergences corresponding to the pure-vacuum self-energy manifest as the pole singularities of gamma as well as Hurwitz zeta functions. This improved regularization procedure consistently reproduces the expected results in the vanishing magnetic field limit and can be used quite generally in other self-energy calculations dealing with arbitrary magnetic field strength. In the presence of the external magnetic field, the general Lorentz structure for the in-medium vector boson self-energy is derived, which can also be implemented in the case of the gauge bosons such as photons and gluons. It has been shown that with vanishing perpendicular momentum of the external particle essentially two form factors are sufficient to describe the self-energy completely. Consequently, two distinct modes are observed in the study of the effective mass, dispersion relations and the spectral function of ρ~0 where one of the modes possesses twofold degeneracy. For large baryonic chemical potential, it is observed that the critical magnetic field required to block the ρ~0 → π~+π~- decay channel increases significantly with temperature. However, in the case of smaller values reaching down to vanishing chemical potential, the critical field follows the opposite trend.
机译:中性ρmeson的单环自能在有效的ρππ和ρnn相互作用中获得有限温度和密度在任意强度的恒定背景磁场的存在下。在我们的方法中,通过尺寸正则化提取自能量的EB依赖性真空部分,其中对应于纯真空自能表现物作为伽马的极奇异性以及血管Zeta功能的紫外线差异。这种改进的正则化过程一致地再现消失磁场限制的预期结果,并且可以在处理任意磁场强度的其他自能计算中使用。在外部磁场的存在下,导出用于中载玻璃的综合洛伦兹结构,其也可以在诸如光子和胶原的规格玻色子的情况下实现。已经表明,随着外部颗粒的垂直动量,基本上两个形状因素足以完全描述自能。因此,在研究有效质量,色散关系和ρ〜0的光谱函数的研究中观察到了两个不同的模式,其中一种模式具有双重退化。对于大型化学电位,观察到阻断ρ〜0→π〜+π〜 - 衰减通道所需的临界磁场随温度而增加。然而,在达到较小值的情况下达到化学潜力的较小值,临界领域遵循相反的趋势。

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