theorem 100.35 One-loop electron self-energy

open in the book · parts/11-qft-standard-model/02-qed-renormalization.tex:1782 · p. 1919

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theorem 100.35: One-loop electron self-energy100.35lemma 100.28: The d-dimensional loop integral100.28lemma 100.26: Feynman parametrization100.26proposition 100.14: The Feynman rules of QED in SI form100.14phenomenon 100.66: The Lamb shift100.66proof : ch:02-qed-renormalization@proof-22proofequation 17.42: eq:ft-gaussian17.42equation 17.109: eq:ft-mellin-gamma17.109lemma 100.27: Wick rotation100.27proposition 106.45: One-loop effective potential106.45theorem 100.31: One-loop vacuum polarization100.31proof : ch:02-qed-renormalization@proof-17proofproof : ch:02-qed-renormalization@proof-15proofequation 100.2: eq:qed-action100.2proposition 100.8: The photon propagator100.8theorem 100.5: The gauge principle100.5lemma 100.22: Spin sums100.22proposition 102.29: Feynman rules for QCD in SI form102.29proposition 100.24: Cross-section master formula100.24proposition 101.45: Decay-rate master formula101.45proposition 101.68: The low-energy limit reproduces Fermi101.68theorem 100.25: One-photon exchange is the Coulomb potential100.25theorem 100.41: Schwinger100.41proof : ch:02-qed-renormalization@proof-7proofcorollary 100.36: Mass renormalization100.36proof : ch:02-qed-renormalization@proof-35proof

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typedirectionnode provenancewhere
depends_on The $d$-dimensional loop integral declared parts/11-qft-standard-model/02-qed-renormalization.tex:1803
depends_on Feynman parametrization declared parts/11-qft-standard-model/02-qed-renormalization.tex:1803
depends_on The Feynman rules of QED in SI form declared parts/11-qft-standard-model/02-qed-renormalization.tex:1803
depends_on The Lamb shift declared parts/11-qft-standard-model/02-qed-renormalization.tex:3070
proves ch:02-qed-renormalization@proof-22 declared parts/11-qft-standard-model/02-qed-renormalization.tex:1807