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20012006
most citedElectroweak two-loop corrections to the effective weak mixing angle

136 citations · 194 across the 4 of their papers we have counts for

collaborators

11 papers

hep-ph2006136 cited

Electroweak two-loop corrections to the effective weak mixing angle

M. Awramik, M. Czakon, A. Freitas

Recently exact results for the complete electroweak two-loop contributions to the effective weak mixing angle were published. This paper illustrates the techniques used for this co…

hep-ph200639 cited

Bosonic Corrections to The Effective Weak Mixing Angle at O(alpha^2)

M. Awramik, M. Czakon, A. Freitas

We present the complete bosonic contributions to the effective weak mixing angle, $\seff$, at the two-loop level in the electroweak interactions. We find their size to be about thr…

hep-ph200614 cited

Bosonic corrections to the effective leptonic weak mixing angle at the two-loop level

M. Czakon, M. Awramik, A. Freitas

Details of the recent calculation of the two-loop bosonic corrections to the effective leptonic weak mixing angle are presented. In particular, the expansion in the difference of t…

hep-ph2005

Indirect Determination of the Higgs Mass Through Electroweak Radiative Corrections

A. Freitas, M. Awramik, M. Czakon

Electroweak precision observables allow stringent tests of the Standard Model at the quantum level and imply interesting bounds on the mass of the Higgs boson through higher-order…

hep-ph2005

ZFITTER: a semi-analytical program for fermion pair production in e+e- annihilation, from version 6.21 to version 6.42

A. B. Arbuzov, M. Awramik, M. Czakon +5

ZFITTER is a Fortran program for the calculation of fermion pair production and radiative corrections at high energy e+e- colliders; it is also suitable for other applications wher…

hep-ph20045 cited

Towards Better Constraints on the Higgs Boson Mass: Two-Loop Fermionic Corrections to sin^2(theta_eff)

M. Awramik, M. Czakon, A. Freitas +1

The complete two-loop electroweak fermionic corrections to the effective leptonic weak mixing angle, sin^2(theta_eff), are now available. Here we shortly present the methods applie…