The one loop effects of two dimension-six operators on gauge boson self-energies are computed within an effective field theory framework. These self-energies are translated into effects on precision electroweak observables, and bounds are obtained on the operator coefficients. The effective field theory framework allows for the divergences that arise in the loop calculations to be properly handled, and for unambiguous bounds on the coefficients to be obtained. We find that the coefficients are only weakly bounded, in contrast to previous calculations that obtained much stronger bounds. We argue that the results of these previous calculations are specious. © 2013 Elsevier B.V
We study the infrared structure of perturbative amplitudes using the effective field theory (EFT) fo...
We present the automation of one-loop computations in the standard-model effective field theory at d...
AbstractThis contribution discusses the current status of tests of the electroweak theory and some o...
The one loop effects of two dimension-six operators on gauge boson self energies are computed within...
We derive bounds on nine dimension-six operators involving electroweak gauge bosons and the Higgs bo...
We derive bounds on nine dimension-six operators involving electroweak gauge bosons and the Higgs bo...
Effective field theory is a model-independent way to search for indirect effects of new physics. It...
We derive bounds from oblique parameters on the dimension-6 operators of an effective field theory o...
AbstractWe present an effective-field-theory calculation of the effect of a dimension-six operator i...
The top quark plays an important role in the search for physics beyond the standard model because of...
In the Standard Model Effective Field Theory (SMEFT), operators involving the top quark are generall...
Abstract The gauge-invariant operators up to dimension six in the low-energy ef...
Abstract The gauge-invariant operators up to dimension six in the low-energy effective field theory ...
We calculate the renormalisation group running of the bosonic Standard Model (SM) effective operator...
Dittmaier S, Schildknecht D, Weiglein G. Which bosonic loop corrections are tested in electroweak pr...
We study the infrared structure of perturbative amplitudes using the effective field theory (EFT) fo...
We present the automation of one-loop computations in the standard-model effective field theory at d...
AbstractThis contribution discusses the current status of tests of the electroweak theory and some o...
The one loop effects of two dimension-six operators on gauge boson self energies are computed within...
We derive bounds on nine dimension-six operators involving electroweak gauge bosons and the Higgs bo...
We derive bounds on nine dimension-six operators involving electroweak gauge bosons and the Higgs bo...
Effective field theory is a model-independent way to search for indirect effects of new physics. It...
We derive bounds from oblique parameters on the dimension-6 operators of an effective field theory o...
AbstractWe present an effective-field-theory calculation of the effect of a dimension-six operator i...
The top quark plays an important role in the search for physics beyond the standard model because of...
In the Standard Model Effective Field Theory (SMEFT), operators involving the top quark are generall...
Abstract The gauge-invariant operators up to dimension six in the low-energy ef...
Abstract The gauge-invariant operators up to dimension six in the low-energy effective field theory ...
We calculate the renormalisation group running of the bosonic Standard Model (SM) effective operator...
Dittmaier S, Schildknecht D, Weiglein G. Which bosonic loop corrections are tested in electroweak pr...
We study the infrared structure of perturbative amplitudes using the effective field theory (EFT) fo...
We present the automation of one-loop computations in the standard-model effective field theory at d...
AbstractThis contribution discusses the current status of tests of the electroweak theory and some o...