Understand
We write explicit and self-contained asymptotic expressions for the tensorial B, C and D Passarino-Veltman functions.
- These include quadratic and linear logarithmic terms, as well as subleading constant terms.
- Only mass-suppressed O(m^2/s) contributions are neglected.
- We discuss the usefulness of such expressions, particularly for studying one-loop effects in 2-to-2 body processes at high energy.
Built on
T. Kinoshita, Mass Singularities Of Feynman Amplitudes
1964
Earlier work this paper cites.
G. Passarino and M. Veltman Nucl. Phys. 𝐁𝟏𝟔𝟎 {\bf{B160}} :151 (1979)
1979
Earlier work this paper cites.
K. Hagiwara, S. Matsumoto, D. Haidt and C. S. Kim, A Novel approach to confront electroweak data and theory
1995
Earlier work this paper cites.
Similar
M. Roth and A. Denner, High-energy approximation of one-loop Feynman integrals
1996
Cited alongside, same era.
T. Hahn and M. Perez-Victoria, Automatized one-loop calculations in four and D dimensions
1999
Cited alongside, same era.
M. Beccaria, F.M. Renard and C. Verzegnassi, Logarithmic Fingerprints of Virtual Supersymmetry
2003
Cited alongside, same era.
Then
G. J. Gounaris and F. M. Renard, About helicity conservation in gauge boson scattering at high energy
2006
Later among the works it cites.
for a review and a rather complete set of references see e.g. A. Denner and S. Pozzorini, One-loop leading logarithms in electroweak radiative corrections. I: Results
2007
Closest in time.
2008
Closest in time.
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