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We present FeynCalc 9.3, a new stable version of a powerful and versatile Mathematica package for symbolic quantum field theory (QFT) calculations.
FIRE6: Feynman Integral REduction with Modular Arithmetic
A. V. Smirnov and F. S. Chuharev, · 1901
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M.-X. Luo, V. Shtabovenko, T.-Z. Yang, and H. X. Zhu, · 1903
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Energy-energy correlation in N N =4 super Yang-Mills theory at next-to-next-to-leading order
J. M. Henn, E. Sokatchev, K. Yan, and A. Zhiboedov, · 1903
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Order v 4 v^{4} corrections to Higgs boson decay into J / ψ + γ J/\psi+\gamma
N. Brambilla, H. S. Chung, W. K. Lai, V. Shtabovenko, and A. Vairo, · 1907
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FeynMaster: a plethora of Feynman tools
D. Fontes and J. C. Romão, · 1909
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Electroweak Radiative Corrections for Collider Physics
A. Denner and S. Dittmaier, · 1912
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FeynRules 2.0 - A complete toolbox for tree-level phenomenology
A. Alloul, N. D. Christensen, C. Degrande, C. Duhr, and B. Fuks, · 1921
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Regularization and Renormalization of Gauge Fields
G. ’t Hooft and M. J. G. Veltman, · 1972
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Supersymmetric Yang-Mills Theories
L. Brink, J. H. Schwarz, and J. Scherk, · 1977
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Supersymmetry, Supergravity Theories and the Dual Spinor Model
F. Gliozzi, J. Scherk, and D. I. Olive, · 1977
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Dimensional Renormalization and the Action Principle
P. Breitenlohner and D. Maison, · 1977
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Energy Correlations in electron - Positron Annihilation: Testing QCD
C. L. Basham, L. S. Brown, S. D. Ellis, and S. T. Love, · 1978
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One Loop Corrections for e+ e- Annihilation Into mu+ mu- in the Weinberg Model
G. Passarino and M. J. G. Veltman, · 1979
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The Axial Current in Dimensional Regularization
M. S. Chanowitz, M. Furman, and I. Hinchliffe, · 1979
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Integration by Parts: The Algorithm to Calculate beta Functions in 4 Loops
K. G. Chetyrkin and F. V. Tkachov, · 1981
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A Theorem on Analytical Calculability of Four Loop Renormalization Group Functions
F. V. Tkachov, · 1981
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QCD Nonleading Corrections to Weak Decays in Dimensional Regularization and ’t Hooft-Veltman Schemes
A. J. Buras and P. H. Weisz, · 1990
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FEYN CALC: Computer algebraic calculation of Feynman amplitudes
R. Mertig, M. Böhm, and A. Denner, · 1991
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Feynman rules for fermion number violating interactions
A. Denner, H. Eck, O. Hahn, and J. Küblbeck, · 1992
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Compact Feynman rules for Majorana fermions
A. Denner, H. Eck, O. Hahn, and J. Küblbeck, · 1992
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The Renormalization of the axial anomaly in dimensional regularization
S. A. Larin, · 1993
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FeynmanParameter and Trace: Programs for expressing Feynman amplitudes as integrals over Feynman parameters
T. H. West, · 1993
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Automatic Feynman graph generation
P. Nogueira, · 1993
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Spurious anomalies in dimensional renormalization
T. L. Trueman, · 1996
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TARCER: A Mathematica program for the reduction of two loop propagator integrals
R. Mertig and R. Scharf, · 1998
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Automatized one loop calculations in four-dimensions and D-dimensions
T. Hahn and M. Perez-Victoria, · 1999
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Group theory factors for Feynman diagrams
T. van Ritbergen, A. N. Schellekens, and J. A. M. Vermaseren, · 1999
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New features of FORM
J. A. M. Vermaseren, · 2000
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O’Mega: An Optimizing matrix element generator
M. Moretti, T. Ohl, and J. Reuter, · 2001
Cited alongside, same era.
Generating Feynman diagrams and amplitudes with FeynArts 3
T. Hahn, · 2001
Cited alongside, same era.
DGLAP and BFKL evolution equations in the N=4 supersymmetric gauge theory
A. V. Kotikov and L. N. Lipatov, · 2001
Cited alongside, same era.
FormLink/FeynCalcFormLink : Embedding FORM in Mathematica and FeynCalc
F. Feng and R. Mertig, · 2012
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Two-loop QED Operator Matrix Elements with Massive External Fermion Lines
J. Blümlein, A. De Freitas, and W. van Neerven, · 2012
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CalcHEP 3.4 for collider physics within and beyond the Standard Model
A. Belyaev, N. D. Christensen, and A. Pukhov, · 2013
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J. Kuipers, T. Ueda, J. A. M. Vermaseren, and J. Vollinga, · 2013
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alphaXiv searches the wider corpus for related work and actual follow-ups.
alphaXiv is searching for related work…
F. Jegerlehner, · 2001
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Higgs boson decay into a lepton pair and a photon revisited
A. Kachanovich, U. Nierste, and I. Nišandžić, · 2001
Cited alongside, same era.
Reduction of one loop tensor five point integrals
A. Denner and S. Dittmaier, · 2003
Cited alongside, same era.
Higgs portal to dark matter and B → K ( ∗ ) B\to K^{(*)} decays
A. Kachanovich, U. Nierste, and I. Nišandžić, · 2003
Cited alongside, same era.
CompHEP 4.4: Automatic computations from Lagrangians to events
CompHEP, E. Boos et al · 2004
Cited alongside, same era.
DGLAP and BFKL equations in the N = 4 N=4 supersymmetric gauge theory
A. V. Kotikov and L. N. Lipatov, · 2004
Cited alongside, same era.
J. Alwall et al · 2014
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GOSAM-2.0: a tool for automated one-loop calculations within the Standard Model and beyond
G. Cullen et al · 2014
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LiteRed 1.4: a powerful tool for reduction of multiloop integrals
R. N. Lee, · 2014
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Energy-Energy Correlations in N=4 Supersymmetric Yang-Mills Theory
A. V. Belitsky, S. Hohenegger, G. P. Korchemsky, E. Sokatchev, and A. Zhiboedov, · 2014
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Package-X: A Mathematica package for the analytic calculation of one-loop integrals
H. H. Patel, · 2015
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HEPMath 1.4: A mathematica package for semi-automatic computations in high energy physics
M. Wiebusch, · 2015
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FIRE5: a C++ implementation of Feynman Integral REduction
A. V. Smirnov, · 2015
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New Developments in FeynCalc 9.0
V. Shtabovenko, R. Mertig, and F. Orellana, · 2016
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Package-X 2.0: A Mathematica package for the analytic calculation of one-loop integrals
H. H. Patel, · 2017
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FeynHelpers: Connecting FeynCalc to FIRE and Package-X
V. Shtabovenko, · 2017
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Collier: a fortran-based Complex One-Loop LIbrary in Extended Regularizations
A. Denner, S. Dittmaier, and L. Hofer, · 2017
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A closed expression for the UV-divergent parts of one-loop tensor integrals in dimensional regularization
G. Sulyok, · 2017
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Fuchsia and Master Integrals for Energy-Energy Correlations at NLO in QCD
O. Gituliar and S. Moch, · 2017
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FormTracer - A Mathematica Tracing Package Using FORM
A. K. Cyrol, M. Mitter, and N. Strodthoff, · 2017
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Analytical Computation of Energy-Energy Correlation at Next-to-Leading Order in QCD
L. J. Dixon, M.-X. Luo, V. Shtabovenko, T.-Z. Yang, and H. X. Zhu, · 2018
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Dirac and Majorana Feynman Rules with four-fermions
M. Paraskevas, · 2018
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N. Brambilla, W. Chen, Y. Jia, V. Shtabovenko, and A. Vairo, · 2018
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Standard model theory for the FCC-ee Tera-Z stage
A. Blondel et al · 2019
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Automated One-Loop Calculations with GoSam
G. Cullen et al · 2034
Closest in time.
Scalar one-loop 4-point integrals
A. Denner and S. Dittmaier, · 2076
Closest in time.