Please use this identifier to cite or link to this item: https://dspace.uzhnu.edu.ua/jspui/handle/lib/57785
Title: Renormalisation of non-differentiable potentials
Authors: Alexandre, J
Defenu, Nicoló
Márián, István Gábor
Grigolia, Giorgi
Mdinaradze, D
Trombettoni, Andrea
Turovtsi-Shiutev, Yolana
Nándori, István
Keywords: Renormalization and Regularization, Renormalization Group, Field Theories in Higher Dimensions, Large Extra Dimensions
Issue Date: 4-Jul-2022
Publisher: Journal of High Energy Physics
Citation: J. Alexandre, N. Defenu, G. Grigolia, I. G. Márián, D. Mdinaradze, A. Trombettoni, Y. Turovtsi-Shiutev and I. Nándori. Renormalization of non-differentiable potentials. Journal of High Energy Physics, Volume 2022, article number 12, 2022(7), page 23.
Abstract: Non-differentiable potentials, such as the V -shaped (linear) potential, appear in various areas of physics. For example, the effective action for branons in the framework of the brane world scenario contains a Liouville-type interaction, i.e., an exponential of the V - shaped function. Another example is coming from particle physics when the standard model Higgs potential is replaced by a periodic self-interaction of an N-component scalar field which depends on the length, thus it is O(N) symmetric. We first compare classical and quantum dynamics near non-analytic points and discuss in this context the role of quantum fluctuations. We then study the renormalisation of such potentials, focusing on the Exact Wilsonian Renormalisation approach, and we discuss how quantum fluctuations smoothen the bare singularity of the potential. Applications of these results to the non-differentiable effective branon potential and to the O(N) models when the spatial dimension is varied and to the O(N) extension of the sine-Gordon model in (1+1) dimensions are presented.
Type: Text
Publication type: Стаття
URI: https://dspace.uzhnu.edu.ua/jspui/handle/lib/57785
Appears in Collections:Наукові публікації кафедри фізико-математичних дисциплін

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