equation 102.31 eq:qcd-casimirs

open in the book · parts/11-qft-standard-model/04-qcd.tex:1165

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equation 102.31: eq:qcd-casimirs102.31phenomenon 102.62: The static potential rises linearly102.62proposition 102.48: Collinear emission and its logarithm102.48proposition 102.58: The three-jet energy distribution102.58theorem 102.35: Asymptotic freedom102.35equation 14.77: eq:lie-su3-c2-fund14.77proposition 106.71: The Wilson loop measures the static potential106.71proof : ch:04-qcd@proof-31proofequation 100.76: eq:qed-eikonal100.76theorem 100.60: Kinoshita–Lee–Nauenberg100.60phenomenon 116.32: Scaling is violated logarithmically116.32proposition 116.16: The equivalent radiator116.16theorem 102.49: The DGLAP evolution equations102.49proof : ch:04-qcd@proof-24proofproof : ch:04-qcd@proof-29proofequation 14.80: eq:lie-su3-roots14.80theorem 102.33: The one-loop coefficient, from a magnetic response102.33corollary 108.20: What is physical in a beta function108.20phenomenon 102.75: Hadronic matter deconfines when heated102.75proof : ch:04-qcd@proof-18proof

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typedirectionnode provenancewhere
depends_on The static potential rises linearly declared parts/11-qft-standard-model/04-qcd.tex:2581
depends_on Collinear emission and its logarithm declared parts/11-qft-standard-model/04-qcd.tex:1996
depends_on The three-jet energy distribution declared parts/11-qft-standard-model/04-qcd.tex:2386
depends_on Asymptotic freedom declared parts/11-qft-standard-model/04-qcd.tex:1465