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H→γγ:a comment on the indeterminacy of non-gauge-invariant integrals
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作者 f.piccinini A.Pilloni A.D.Polosa 《Chinese Physics C》 SCIE CAS CSCD 2013年第4期7-13,共7页
We reanalyze the recent computation of the amplitude of the Higgs boson decay into two photons presented by Gastmans et al. [1, 2]. The reasons for why this result cannot be the correct one have been discussed in some... We reanalyze the recent computation of the amplitude of the Higgs boson decay into two photons presented by Gastmans et al. [1, 2]. The reasons for why this result cannot be the correct one have been discussed in some recent papers. We address here the general issue of the indeterminacy of integrals with four-dimensional gauge-breaking regulators and to which extent it might eventually be solved by imposing physical constraints. Imposing gauge invariance as the last step upon Rξ-gauge calculations with four-dimensional gauge-breaking regulators, allows us to recover the well known H→γγ result. However we show that in the particular case of the unitary gauge, the indeterminacy cannot be tackled in the same way. The combination of the unitary gauge with a cutoff regularization scheme turns out to be non-predictive. 展开更多
关键词 Higgs decay regularization methods loop calculations gauge invariance
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Status and accuracy of the Monte Carlo generators for luminosity measurements
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作者 G.Montagna G.Balossini +3 位作者 C.Bignamini C.M.Carloni Calame O.Nicrosini f.piccinini 《Chinese Physics C》 SCIE CAS CSCD 2010年第6期883-888,共6页
The status and accuracy of the precision Monte Carlo generators used for luminosity measurements at flavour factories is reviewed. It is shown that, thanks to a considerable, long-term effort in tuned comparisons betw... The status and accuracy of the precision Monte Carlo generators used for luminosity measurements at flavour factories is reviewed. It is shown that, thanks to a considerable, long-term effort in tuned comparisons between the predictions of independent programs, as well as in the validation of the generators against the presently available calculations of the next-to-next-to-leading order QED corrections to Bhabha scattering, the theoretical accuracy reached by the most precise tools is of about one per mille. This error estimate is valid for realistic experimental cuts, appears to be quite robust and is already sufficient for very accurate luminosity measurements. However, recent progress and possible advances to further improve it are also discussed. 展开更多
关键词 LUMINOSITY QED Bhabha scattering radiative corrections Monte Carlo NNLO calculations
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