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Three-loop Euler-Heisenberg Lagrangian in 1+1 QED, part 1: single fermion-loop part

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arxiv 1812.08380 v1 pith:NGBLOUUP submitted 2018-12-20 hep-th hep-ph

classification hep-thhep-ph
keywords coefficientslagrangiancalculationpartworldlinecontributioneuler-heisenbergfirst
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We study the three-loop Euler-Heisenberg Lagrangian in spinor quantum electrodynamics in 1+1 dimensions. In this first part we calculate the one-fermion-loop contribution, applying both standard Feynman diagrams and the worldline formalism which leads to two different representations in terms of fourfold Schwinger-parameter integrals. Unlike the diagram calculation, the worldline approach allows one to combine the planar and the non-planar contributions to the Lagrangian. Our main interest is in the asymptotic behaviour of the weak-field expansion coefficients of this Lagrangian, for which a non-perturbative prediction has been obtained in previous work using worldline instantons and Borel analysis. We develop algorithms for the calculation of the weak-field expansions coefficients that, in principle, allow their calculation to arbitrary order. Here for the non-planar contribution we make essential use of the polynomial invariants of the dihedral group D4 in Schwinger parameter space to keep the expressions manageable. As expected on general grounds, the coefficients are of the form r1+r2*zeta(3) with rational numbers r1, r2. We compute the first two coefficients analytically, and four more by numerical integration.

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Cited by 3 Pith papers

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  1. Heisenberg-Euler and the Quantum Dilogarithm

    hep-th 2025-12 conditional novelty 7.0 of 10

    Heisenberg-Euler effective Lagrangian is recast as a dispersion integral with the quantum dilogarithm as kernel, its imaginary part given directly by the dilogarithm and its real part involving the modular dual.

  2. Nonlinear trident using WKB and worldline instantons

    hep-ph 2024-12 conditional novelty 7.0 of 10

    First WKB and worldline-instanton calculations of nonlinear trident in time-dependent and spacetime-dependent electric fields, including direct and exchange terms and a Coulomb suppression factor.

  3. Propagator from Nonperturbative Worldline Dynamics

    hep-th 2019-08 reject novelty 6.0 of 10

    Worldline Monte Carlo with a fitted potential PDF gives an all-orders quenched propagator for S2QED, with a pole mass that drops toward zero near a critical coupling around 0.72.

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