PACS numbers

03.70.+k Theory of quantized fields
  1. A.O. Barvinsky, W. Wachowski “Schwinger—DeWitt technique in quantum gravityPhys. Usp. 67 751–767 (2024)
    03.70.+k, 04.60.+m, 11.10.−z (all)
  2. V.I. Ritus “Finite value of the bare charge and the relation of the fine structure constant ratio for physical and bare charges to zero-point oscillations of the electromagnetic field in a vacuumPhys. Usp. 65 468–486 (2022)
    02.40.−k, 03.70.+k, 05.40.−a, 11.10.Hi, 11.10.Jj, 11.55.Hx, 12.20.−m, 41.60.−m (all)
  3. D.A. Trunin “Pedagogical introduction to the Sachdev—Ye—Kitaev model and two-dimensional dilaton gravityPhys. Usp. 64 219–252 (2021)
    03.70.+k, 04.62.+v, 04.70.Dy, 05.30.Fk, 05.45.Ac, 05.45.Mt, 11.10.Kk, 11.10.Wx (all)
  4. P.I. Arseev “On the nonequilibrium diagram technique: derivation, some features and applicationsPhys. Usp. 58 1159–1205 (2015)
    03.70.+k, 05.60.Gg, 11.10.Wx, 72.10.Bg (all)
  5. V.I. Ritus “Duality of two-dimensional field theory and four-dimensional electrodynamics leading to finite value of the bare chargePhys. Usp. 56 565–589 (2013)
    03.70.+k, 12.20.−m, 41.60.−m (all)
  6. P.S. Isaev, E.A. Mamchur “Conceptual Foundations of Quantum Field TheoryPhys. Usp. 43 953–958 (2000)
    01.30.Vv, 01.70.+w, 03.70.+k (all)
  7. M.I. Krivoruchenko “Transitional currents of spin-1/2 particlesPhys. Usp. 37 601–606 (1994)
    03.70.+k, 11.40.−q (all)
  8. A.A. Migdal “Stochastic quantization of field theorySov. Phys. Usp. 29 389–411 (1986)
    11.15.Ha, 12.38.Gc, 03.70.+k, 12.20.Ds, 05.30.−d (all)
  9. A.I. Vainshtein, V.I. Zakharov et alABC of instantonsSov. Phys. Usp. 25 195–215 (1982)
    03.70.+k, 11.10.−z, 12.35.Cn (all)
  10. A.B. Migdal “Vacuum polarization in strong fields and pion condensationSov. Phys. Usp. 20 879–898 (1977)
    21.65.+f, 03.70.+k (all)
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