Quick search Find article
Quick search
Find article

Quark mass dependence of the one-loop three-gluon vertex in arbitrary dimension

Andrei I. Davydychev1, Per Osland2 and Leo Saks2

Show affiliations


The one-loop off-shell massive quark contribution to the three-gluon vertex is calculated in an arbitrary space-time dimension. The results for all relevant on-shell and symmetric limits are obtained directly from the general off-shell results. The analytic structure of the results for the relevant massive scalar integrals is also discussed.


Keywords

QCD

NLO Computations

PACS

14.65.-q Quarks

14.70.Dj Gluons

12.38.-t Quantum chromodynamics

Subjects

Particle physics and field theory

Dates

Issue 08 ( 1 August 2001)

Received 12 June 2001, accepted for publication 23 August 2001

Published 6 September 2001



  1. Quark mass dependence of the one-loop three-gluon vertex in arbitrary dimension

    Andrei I. Davydychev et al JHEP08(2001)050

  2. Probing some N = 1 AdS/CFT RG flows

    Clifford V. Johnson et al JHEP05(2001)036

  3. Brane-world cosmology

    Daisuke Ida JHEP09(2000)014

  4. Little string theory in a double scaling limit

    Amit Giveon and David Kutasov JHEP10(1999)034

  5. Supergravity, D-brane probes and thermal super Yang-Mills: a comparison

    Elias Kiritsis JHEP10(1999)010

  6. Borel summation and momentum-plane analyticity in perturbative QCD

    Irinel Caprini and Matthias Neubert JHEP03(1999)007

  7. Novel local CFT and exact results on perturbations of N = 4 super Yang Mills from AdS dynamics

    Luciano Girardello et al JHEP12(1998)022

  8. Energy fluxes during the interference of electromagnetic waves

    S A Afanas'ev and D I Sementsov 2008 Phys.-Usp. 51 355

  9. Short-range order and diffuse scattering in nonstoichiometric compounds

    Aleksandr I Gusev 2006 Phys.-Usp. 49 693

  10. The isolated critical value phenomenon in local-global riddling bifurcation

    Tan Ning et al 2002 Chinese Phys. 11 670

View by subject




Export







Please login to access our web services, or create an account if you don't yet have one.

You must have cookies enabled in your web browser to be able to login.

Username
Password

Forgotten your password? Get a new one here.