Soft-gluon effective coupling and cusp anomalous dimension

Abstract We consider the extension of the CMW soft-gluon effective coupling [1] in the context of soft-gluon resummation for QCD hard-scattering observables beyond the next-to-leading logarithmic accuracy. We present two proposals of a soft-gluon effective coupling that extend the CMW coupling to al...

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Main Authors: Stefano Catani, Daniel de Florian, Massimiliano Grazzini
Format: Article
Language:English
Published: SpringerOpen 2019-08-01
Series:European Physical Journal C: Particles and Fields
Online Access:http://link.springer.com/article/10.1140/epjc/s10052-019-7174-9
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spelling doaj-fe4cf8373d6a4f428be64b8c3961f9e72020-11-25T03:56:59ZengSpringerOpenEuropean Physical Journal C: Particles and Fields1434-60441434-60522019-08-0179811110.1140/epjc/s10052-019-7174-9Soft-gluon effective coupling and cusp anomalous dimensionStefano Catani0Daniel de Florian1Massimiliano Grazzini2INFN, Sezione di Firenze and Dipartimento di Fisica e Astronomia, Università di FirenzeInternational Center for Advanced Studies (ICAS), ECyT-UNSAMPhysik Institut, Universität ZürichAbstract We consider the extension of the CMW soft-gluon effective coupling [1] in the context of soft-gluon resummation for QCD hard-scattering observables beyond the next-to-leading logarithmic accuracy. We present two proposals of a soft-gluon effective coupling that extend the CMW coupling to all perturbative orders in the $${\overline{\mathrm{MS}}}$$ MS¯ coupling $$\alpha _{\mathrm {S}}$$ αS . Although both effective couplings are well-defined in the physical four-dimensional space time, we examine their behaviour in $$d=4 -2\epsilon $$ d=4-2ϵ space time dimensions. We uncover an all-order perturbative relation with the cusp anomalous dimension: the (four dimensional) cusp anomalous dimension is equal to the d-dimensional soft-gluon effective coupling at the conformal point $$\epsilon =\beta (\alpha _{\mathrm {S}})$$ ϵ=β(αS) , where the d-dimensional QCD $$\beta $$ β -function, $$\beta (\alpha _{\mathrm {S}}) - \epsilon $$ β(αS)-ϵ , vanishes. We present the explicit expressions of the two soft-gluon couplings up to $$\mathcal{O}(\alpha _{\mathrm {S}}^2)$$ O(αS2) in d dimensions. In the four-dimensional case we compute the two soft couplings up to $$\mathcal{O}(\alpha _{\mathrm {S}}^3)$$ O(αS3) . For one of the two couplings, we confirm the $$\mathcal{O}(\alpha _{\mathrm {S}}^3)$$ O(αS3) result previously presented by other authors. For the other coupling, we obtain the explicit relation with the cusp anomalous dimension up to $$\mathcal{O}(\alpha _{\mathrm {S}}^4)$$ O(αS4) . We comment on Casimir scaling at $$\mathcal{O}(\alpha _{\mathrm {S}}^4)$$ O(αS4) .http://link.springer.com/article/10.1140/epjc/s10052-019-7174-9
collection DOAJ
language English
format Article
sources DOAJ
author Stefano Catani
Daniel de Florian
Massimiliano Grazzini
spellingShingle Stefano Catani
Daniel de Florian
Massimiliano Grazzini
Soft-gluon effective coupling and cusp anomalous dimension
European Physical Journal C: Particles and Fields
author_facet Stefano Catani
Daniel de Florian
Massimiliano Grazzini
author_sort Stefano Catani
title Soft-gluon effective coupling and cusp anomalous dimension
title_short Soft-gluon effective coupling and cusp anomalous dimension
title_full Soft-gluon effective coupling and cusp anomalous dimension
title_fullStr Soft-gluon effective coupling and cusp anomalous dimension
title_full_unstemmed Soft-gluon effective coupling and cusp anomalous dimension
title_sort soft-gluon effective coupling and cusp anomalous dimension
publisher SpringerOpen
series European Physical Journal C: Particles and Fields
issn 1434-6044
1434-6052
publishDate 2019-08-01
description Abstract We consider the extension of the CMW soft-gluon effective coupling [1] in the context of soft-gluon resummation for QCD hard-scattering observables beyond the next-to-leading logarithmic accuracy. We present two proposals of a soft-gluon effective coupling that extend the CMW coupling to all perturbative orders in the $${\overline{\mathrm{MS}}}$$ MS¯ coupling $$\alpha _{\mathrm {S}}$$ αS . Although both effective couplings are well-defined in the physical four-dimensional space time, we examine their behaviour in $$d=4 -2\epsilon $$ d=4-2ϵ space time dimensions. We uncover an all-order perturbative relation with the cusp anomalous dimension: the (four dimensional) cusp anomalous dimension is equal to the d-dimensional soft-gluon effective coupling at the conformal point $$\epsilon =\beta (\alpha _{\mathrm {S}})$$ ϵ=β(αS) , where the d-dimensional QCD $$\beta $$ β -function, $$\beta (\alpha _{\mathrm {S}}) - \epsilon $$ β(αS)-ϵ , vanishes. We present the explicit expressions of the two soft-gluon couplings up to $$\mathcal{O}(\alpha _{\mathrm {S}}^2)$$ O(αS2) in d dimensions. In the four-dimensional case we compute the two soft couplings up to $$\mathcal{O}(\alpha _{\mathrm {S}}^3)$$ O(αS3) . For one of the two couplings, we confirm the $$\mathcal{O}(\alpha _{\mathrm {S}}^3)$$ O(αS3) result previously presented by other authors. For the other coupling, we obtain the explicit relation with the cusp anomalous dimension up to $$\mathcal{O}(\alpha _{\mathrm {S}}^4)$$ O(αS4) . We comment on Casimir scaling at $$\mathcal{O}(\alpha _{\mathrm {S}}^4)$$ O(αS4) .
url http://link.springer.com/article/10.1140/epjc/s10052-019-7174-9
work_keys_str_mv AT stefanocatani softgluoneffectivecouplingandcuspanomalousdimension
AT danieldeflorian softgluoneffectivecouplingandcuspanomalousdimension
AT massimilianograzzini softgluoneffectivecouplingandcuspanomalousdimension
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