在梅林-巴恩斯表征中对轻子反常现象的十阶 QED 辐射修正的分析计算

IF 3.4 3区 物理与天体物理 Q2 PHYSICS, NUCLEAR Journal of Physics G: Nuclear and Particle Physics Pub Date : 2024-03-28 DOI:10.1088/1361-6471/ad2e32
O P Solovtsova, V I Lashkevich, L P Kaptari
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引用次数: 0

摘要

我们研究了由于插入光子真空极化算子的图的贡献而对轻子(L = e、μ 和 τ)反常磁矩产生的辐射 QED 修正,该算子完全由四个封闭的轻子(l = e、μ 和 τ)环组成。此外,我们还重点研究了两个环由与外部环相同类型的轻子 L 构成,另外两个环由不同于 L 的轻子 ℓ 构成的特定算子。通过分析,辐射修正用内部轻子质量与外部轻子质量之比 r = mℓ/mL 表示。在整个r区间(0 < r < ∞)内,对r的依赖性进行了数值研究。为了能够与早期发表的结果进行比较,我们的精确分析表达式在 r → 0 和 r → ∞ 时展开,并与文献中已知的相应渐近展开进行比较。
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Analytical calculations of the tenth order QED radiative corrections to lepton anomalies within the Mellin–Barnes representation
We investigate the radiative QED corrections to the lepton (L = e, μ and τ) anomalous magnetic moment due to the contributions of diagrams with insertions of the photon vacuum polarisation operator consisting solely of four closed lepton (l = e, μ and τ) loops. Moreover, we focus on specific operators with two loops formed by leptons L of the same type as the external one, the other two formed by leptons different from L. The approach is essentially based on the employment of the Mellin–Barnes representation of the x-parametrization of the corresponding Feynman diagrams. This allows one to obtain, for the first time, exact analytical expressions for the radiative corrections of the tenth order w.r.t. the electromagnetic coupling constant e. Analytically, the radiative corrections are expressed in terms of the ratio r = m /m L of the internal to external lepton masses. The dependence on r is investigated numerically in the whole interval of r, 0 < r < ∞ . To make comparisons with earlier published results possible, our exact analytical expressions are expanded as r → 0 and r → ∞ and compared with the corresponding asymptotic expansions known in the literature.
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来源期刊
CiteScore
7.60
自引率
5.70%
发文量
105
审稿时长
1 months
期刊介绍: Journal of Physics G: Nuclear and Particle Physics (JPhysG) publishes articles on theoretical and experimental topics in all areas of nuclear and particle physics, including nuclear and particle astrophysics. The journal welcomes submissions from any interface area between these fields. All aspects of fundamental nuclear physics research, including: nuclear forces and few-body systems; nuclear structure and nuclear reactions; rare decays and fundamental symmetries; hadronic physics, lattice QCD; heavy-ion physics; hot and dense matter, QCD phase diagram. All aspects of elementary particle physics research, including: high-energy particle physics; neutrino physics; phenomenology and theory; beyond standard model physics; electroweak interactions; fundamental symmetries. All aspects of nuclear and particle astrophysics including: nuclear physics of stars and stellar explosions; nucleosynthesis; nuclear equation of state; astrophysical neutrino physics; cosmic rays; dark matter. JPhysG publishes a variety of article types for the community. As well as high-quality research papers, this includes our prestigious topical review series, focus issues, and the rapid publication of letters.
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