Fighting off field dependence in MSSM Higgs-mass corrections of order $$\alpha _t\,\alpha _s$$ α t α s and $$\alpha _t^2$$ α t 2

Abstract The connection between gauge and Higgs sectors makes supersymmetric extensions of the Standard Model predictive frameworks for the derivation of Higgs masses. In this paper, we study the contamination of such predictions by field-renormalization constants, in the MSSM with two-loop gaugeles...

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Main Authors: Florian Domingo, Sebastian Paßehr
Format: Article
Language:English
Published: SpringerOpen 2021-07-01
Series:European Physical Journal C: Particles and Fields
Online Access:https://doi.org/10.1140/epjc/s10052-021-09450-9
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spelling doaj-6b43042541fc4b69b09f0d073f8e03c62021-08-01T11:12:47ZengSpringerOpenEuropean Physical Journal C: Particles and Fields1434-60441434-60522021-07-0181713510.1140/epjc/s10052-021-09450-9Fighting off field dependence in MSSM Higgs-mass corrections of order $$\alpha _t\,\alpha _s$$ α t α s and $$\alpha _t^2$$ α t 2Florian Domingo0Sebastian Paßehr1Bethe Center for Theoretical Physics, Physikalisches Institut der Universität BonnInstitute for Theoretical Particle Physics and Cosmology, RWTH Aachen UniversityAbstract The connection between gauge and Higgs sectors makes supersymmetric extensions of the Standard Model predictive frameworks for the derivation of Higgs masses. In this paper, we study the contamination of such predictions by field-renormalization constants, in the MSSM with two-loop gaugeless corrections of $$\mathcal {O}\big (\alpha _{t,b}\,\alpha _s,\,\alpha _{t,b}^2\big )$$ O ( α t , b α s , α t , b 2 ) and full momentum dependence, and demonstrate how strict perturbative expansions allow to systematically neutralize the dependence on such unphysical objects. On the other hand, the popular procedure consisting in an iterative pole search remains explicitly dependent on field counterterms. We then analyze the magnitude of the intrinsic uncertainty that this feature implies for the iterative method, both in non-degenerate and near-degenerate regimes, and conclude that this strategy does not improve on the predictions of the more straightforward expansion. We also discuss several features related to the inclusion of the orders $$\alpha _{t,b}\,\alpha _s$$ α t , b α s and $$\alpha _{t,b}^2$$ α t , b 2 in the so-called ‘fixed-order’ approach, such as the resummation of UV-logarithms for heavy supersymmetric spectra.https://doi.org/10.1140/epjc/s10052-021-09450-9
collection DOAJ
language English
format Article
sources DOAJ
author Florian Domingo
Sebastian Paßehr
spellingShingle Florian Domingo
Sebastian Paßehr
Fighting off field dependence in MSSM Higgs-mass corrections of order $$\alpha _t\,\alpha _s$$ α t α s and $$\alpha _t^2$$ α t 2
European Physical Journal C: Particles and Fields
author_facet Florian Domingo
Sebastian Paßehr
author_sort Florian Domingo
title Fighting off field dependence in MSSM Higgs-mass corrections of order $$\alpha _t\,\alpha _s$$ α t α s and $$\alpha _t^2$$ α t 2
title_short Fighting off field dependence in MSSM Higgs-mass corrections of order $$\alpha _t\,\alpha _s$$ α t α s and $$\alpha _t^2$$ α t 2
title_full Fighting off field dependence in MSSM Higgs-mass corrections of order $$\alpha _t\,\alpha _s$$ α t α s and $$\alpha _t^2$$ α t 2
title_fullStr Fighting off field dependence in MSSM Higgs-mass corrections of order $$\alpha _t\,\alpha _s$$ α t α s and $$\alpha _t^2$$ α t 2
title_full_unstemmed Fighting off field dependence in MSSM Higgs-mass corrections of order $$\alpha _t\,\alpha _s$$ α t α s and $$\alpha _t^2$$ α t 2
title_sort fighting off field dependence in mssm higgs-mass corrections of order $$\alpha _t\,\alpha _s$$ α t α s and $$\alpha _t^2$$ α t 2
publisher SpringerOpen
series European Physical Journal C: Particles and Fields
issn 1434-6044
1434-6052
publishDate 2021-07-01
description Abstract The connection between gauge and Higgs sectors makes supersymmetric extensions of the Standard Model predictive frameworks for the derivation of Higgs masses. In this paper, we study the contamination of such predictions by field-renormalization constants, in the MSSM with two-loop gaugeless corrections of $$\mathcal {O}\big (\alpha _{t,b}\,\alpha _s,\,\alpha _{t,b}^2\big )$$ O ( α t , b α s , α t , b 2 ) and full momentum dependence, and demonstrate how strict perturbative expansions allow to systematically neutralize the dependence on such unphysical objects. On the other hand, the popular procedure consisting in an iterative pole search remains explicitly dependent on field counterterms. We then analyze the magnitude of the intrinsic uncertainty that this feature implies for the iterative method, both in non-degenerate and near-degenerate regimes, and conclude that this strategy does not improve on the predictions of the more straightforward expansion. We also discuss several features related to the inclusion of the orders $$\alpha _{t,b}\,\alpha _s$$ α t , b α s and $$\alpha _{t,b}^2$$ α t , b 2 in the so-called ‘fixed-order’ approach, such as the resummation of UV-logarithms for heavy supersymmetric spectra.
url https://doi.org/10.1140/epjc/s10052-021-09450-9
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