TARCER - a Mathematica program for the reduction of two-loop propagator integrals. Nature of problem: Reduction of Feynman integrals in pertubative two-loop calculations. Solution method: The system of recurrence relations given by Tarasov [1] (Source: http://cpc.cs.qub.ac.uk/summaries/)

References in zbMATH (referenced in 12 articles , 1 standard article )

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  1. Dall’Olio, P.; De Meerleer, T.; Dudal, D.; Sorella, S. P.; Bashir, A.: Landau-Khalatnikov-Fradkin transformations for the two loop massless quark propagator (2021)
  2. Ablinger, J.; Blümlein, J.; De Freitas, A.; Schönwald, K.: Subleading logarithmic QED initial state corrections to (e^+ e^- \to\gamma^\ast/ Z^0^\ast) to (O(\alpha^6 L^5)) (2020)
  3. Fazio, A. R.; Reyes R., E. A.: The lightest Higgs boson mass of the MSSM at three-loop accuracy (2019)
  4. Blümlein, Johannes; De Freitas, Abilio; Van Neerven, Wilhelmus: Two-loop QED operator matrix elements with massive external fermion lines (2012)
  5. Duerr, Michael; Lindner, Manfred; Merle, Alexander: On the quantitative impact of the Schechter-Valle theorem (2011)
  6. Schröder, Y.; Vepsäläinen, M.; Vuorinen, A.; Zhu, Y.: The ultraviolet limit and sum rule for the shear correlator in hot Yang-Mills theory (2011)
  7. Gracey, J. A.: Four loop (\overline\mathbfMS) mass anomalous dimension in the Gross-Neveu model (2008)
  8. Giovannangeli, P.: Two-loop renormalization of the magnetic coupling and non-perturbative sector in hot QCD (2006)
  9. Tarasov, O. V.: Hypergeometric representation of the two-loop equal mass sunrise diagram (2006)
  10. Caffo, M.; Czyż, H.; Grzelińska, A.; Remiddi, E.: Numerical evaluation of the general massive 2-loop 4-denominator self-mass master integral from differential equations (2004)
  11. Cabral-Rosetti, Luis G.; Sanchis-Lozano, Miguel A.: Generalized hypergeometric functions and the evaluation of scalar one-loop integrals in Feynman diagrams (2000)
  12. Mertig, R.; Scharf, R.: TARCER -- a Mathematica program for the reduction of two-loop propagator integrals (1998)