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001 on1083040958
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006 m d
008 190119s2018 enk o 000 0 eng d
040 _aEBLCP
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019 _a1082136227
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020 _a9781351437004
020 _a1351437003
020 _z1138406392
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020 _z9781138406391
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020 _a9780203750100
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020 _a0203750101
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020 _z9780750302814
035 _a1999048
_b(N$T)
035 _a(OCoLC)1083040958
_z(OCoLC)1082136227
_z(OCoLC)1082875937
_z(OCoLC)1083025607
_z(OCoLC)1083271420
050 4 _aQC793.3.F5
_bB34 2018
072 7 _aSCI
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082 0 4 _a530.1/435
_223
049 _aMAIN
100 1 _aBailin, D.,
_eauthor.
_934223
245 1 0 _aIntroduction to Gauge Field theory /
_cby D. Bailin, A Love.
250 _aRevised edition.
264 1 _aAbingdon, Oxon ;
_aNew York, NY :
_bRoutledge,
_c2018.
300 _a1 online resource (385 pages)
336 _atext
_btxt
_2rdacontent
337 _acomputer
_bc
_2rdamedia
338 _aonline resource
_bcr
_2rdacarrier
500 _aDescription based upon print version of record.
505 0 _aCover; Half Title; Title Page; Copyright Page; Dedication; Table of Contents; Preface to first edition; Preface to revised edition; 1: Path integrals; Problem; References; 2: Path integrals in non-relativistic quantum mechanics; 2.1 Transition amplitudes as path integrals; 2.2 The ground-state-to-ground-state amplitude, W[J]; 2.3 Ground-state expectation values from W[J]; Problems; References; 3: Classical field theory; 3.1 Euler-Lagrange equations; 3.2 Noether's theorem; 3.3 Scalar field theory; 3.4 Spinor field theory; 3.5 Massless vector field theory; Problems; References
505 8 _a8.5 Feynman rules for Yukawa interactions8.6 Massless fermions; 8.7 Scattering amplitudes with fermions; Problems; References; 9: Gauge field theories; 9.1 Abelian gauge field theory; 9.2 Non-Abelian gauge field theories; 9.3 Field equations for gauge field theories; References; 10: Feynman rules for quantum chromodynamics and quantum electrodynamics; 10.1 Quantum chromodynamics; 10.2 Problems in quantising gauge field theories; 10.3 An analogy with ordinary integrals; 10.4 Quantisation of gauge field theory; 10.5 Gauge fixing terms and Faddeev--Popov ghosts
505 8 _a10.6 Feynman rules for gauge field theories10.7 Scattering amplitudes with gauge fields; Problems; References; 11: Renormalisation of QCD and QED at one-loop order; 11.1 Counter terms for gauge field theories; 11.2 Calculation of renormalisation constants; 11.3 The electron anomalous magnetic moment; Problems; References; 12: QCD and asymptotic freedom; 12.1 The renormalisation group equation; 12.2 Deep inelastic electron-nucleon scattering; 12.3 The Wilson operator product expansion; 12.4 Wilson coefficients and moments of structure functions
500 _a12.5 Renormalisation group equation for Wilson coefficients
588 _aDescription based on online resource; title from digital title page (viewed on July 18, 2019).
590 _aMaster record variable field(s) change: 050
650 0 _aGauge fields (Physics)
_934224
650 0 _aParticles (Nuclear physics)
650 7 _aSCIENCE / Energy.
_2bisacsh
650 7 _aSCIENCE / Mechanics / General.
_2bisacsh
_913286
650 7 _aSCIENCE / Physics / General.
_2bisacsh
650 7 _aGauge fields (Physics)
_2fast
_0(OCoLC)fst00938995
_934224
650 7 _aParticles (Nuclear physics)
_2fast
_0(OCoLC)fst01054130
655 0 _aElectronic books.
655 4 _aElectronic books.
700 1 _aLove, A.,
_eauthor.
_934225
776 0 8 _iPrint version:
_aBailin, D.
_tIntroduction to Gauge Field Theory Revised Edition
_dMilton : Routledge,c2018
_z9781138406391
856 4 0 _3EBSCOhost
_uhttps://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&db=nlabk&AN=1999048
880 8 _6505-00/(S
_a4: Quantum field theory of a scalar field4.1 The generating functional W[J]; 4.2 The generating functional for free-field theory; 4.3 Green functions for free-field theory; 4.4 The effective action and one-particle-irreducible Green functions; Problems; References; 5: Scattering amplitudes; 5.1 Scattering amplitude in quantum mechanics; 5.2 Scattering amplitude in quantum field theory; References; 6: Feynman rules for λφ4 theory; 6.1 Perturbation theory; 6.2 Momentum space Feynman rules; 6.3 One-particle-irreducible Green functions; 6.4 Scattering amplitudes
880 8 _6505-00/(S
_a6.5 Calculation of the scattering cross sectionProblems; References; 7: Renormalisation of λφ4 theory; 7.1 Physical motivation for renormalisation; 7.2 Dimensional regularisation; 7.3 Evaluation of Feynman integrals; 7.4 Renormalisation of λφ4 theory at one-loop order; 7.5 Renormalisation schemes; Problems; References; 8: Quantum field theory with fermions; 8.1 Path integrals over Grassmann variables; 8.2 The generating functional for spinor field theories; 8.3 Propagator for the Dirac field; 8.4 Renormalisable theories of Dirac fields and scalar fields
938 _aEBL - Ebook Library
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938 _aYBP Library Services
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938 _aYBP Library Services
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