Path-Integral Quantization

foundationsresults+56 moreequations+32 morephenomenaoweddepends_on (declared)depends_on (declared)depends_on (declared)depends_on (declared)depends_on (declared)depends_on (declared)depends_on (declared)depends_on (declared)depends_on (declared)depends_on (declared)depends_on (declared)depends_on (declared)depends_on (declared)depends_on (declared)depends_on (declared)depends_on (declared)depends_on (declared)depends_on (declared)depends_on (declared)depends_on (declared)definition 106.12: Euclidean time106.12 Euclidean timedefinition 106.19: Schwinger functions106.19 Schwinger functi…notation 106.23: The scalar field and its source106.23 The scalar field…definition 106.24: The generating functional106.24 The generating f…definition 106.34: Grassmann algebra106.34 Grassmann algebradefinition 106.41: Effective action106.41 Effective actionnotation 106.50: Absorbing the coupling into the potential106.50 Absorbing the co…definition 106.56: The BRST operator106.56 The BRST operatordefinition 106.59: BRST charge and physical states106.59 BRST charge and…definition 106.66: Link variables and the plaquette106.66 Link variables a…definition 106.70: Wilson loop106.70 Wilson loopdefinition 106.79: Topological charge106.79 Topological char…lemma 106.1: The short-time kernel106.1 The short-time k…lemma 106.2: Gaussian integrals106.2 Gaussian integra…theorem 106.3: Feynman's sum over histories106.3 Feynman's sum ov…proposition 106.4: From the kernel to the Schrödinger equation106.4 From the kernel…theorem 106.7: Trotter product formula106.7 Trotter product…proposition 106.9: The midpoint rule is forced by gauge invariance106.9 The midpoint rul…theorem 106.10: Stationary phase106.10 Stationary phaseproposition 106.11: The semiclassical propagator is the WKB wavefunction106.11 The semiclassica…proposition 106.13: The Euclidean weight106.13 The Euclidean we…proposition 106.14: The Feynman contour permits the rotation106.14 The Feynman cont…theorem 106.16: Feynman–Kac106.16 Feynman–Kacproposition 106.17: Euclidean time projects onto the ground state106.17 Euclidean time p…theorem 106.18: The partition function is a periodic path integral106.18 The partition fu…equation 106.1: eq:pathint-propagator-defeq. (106.1)equation 106.3: eq:pathint-hjeq. (106.3)equation 106.5: eq:pathint-short-timeeq. (106.5)equation 106.6: eq:pathint-short-time-momentumeq. (106.6)equation 106.7: eq:pathint-gaussian-neq. (106.7)equation 106.8: eq:pathint-fresneleq. (106.8)equation 106.9: eq:pathint-slicedeq. (106.9)equation 106.17: eq:pathint-van-vleckeq. (106.17)equation 106.22: eq:pathint-feynman-kaceq. (106.22)equation 106.24: eq:pathint-spectraleq. (106.24)equation 106.30: eq:pathint-reflection-positivityeq. (106.30)equation 106.32: eq:pathint-scalar-lagrangianeq. (106.32)equation 106.35: eq:pathint-Zeq. (106.35)phenomenon 106.5: The Aharonov–Bohm effect106.5 The Aharonov–Boh…phenomenon 106.77: The light hadron spectrum is a prediction of QCD106.77 The light hadron…phenomenon 106.91: The neutral pion decays to two photons at the anomaly rate106.91 The neutral pion…pending : ch:08-path-integral-quantization@pending-1pendingpending : ch:08-path-integral-quantization@pending-2pendingpending : ch:08-path-integral-quantization@pending-3pendingpending : ch:08-path-integral-quantization@pending-4pendingpending : ch:08-path-integral-quantization@pending-5pending
The chain of Path-Integral Quantization: 46 of 134 objects, read left to right from what the chapter assumes to what tests it. Solid lines are declared logical edges, dashed ones were inferred from the structure of the source. Click any node to open its own chain.

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