Abstract

In the present paper, we investigate regularization of the one-loop quantum corrections with infinite Kaluza-Klein (KK) states and evaluate Casimir vacuum energy from extra dimensions. The extra dimensional models always involve the infinite massless or massive Kaluza-Klein states, and therefore, the regularization of the infinite KK corrections is highly problematic. In order to avoid the ambiguity, we adopt the proper time integrals and the Riemann zeta function regularization in evaluating the summations of infinite KK states. In the calculation, we utilize the KK regularization method with exchanging the infinite summations and the infinite loop integrals. At the same time, we also evaluate the correction by the the dimensional regularization method without exchanging the summations and the loop integrals. Then, we clearly show that the regularized Casimir corrections from the KK states have the form of $\propto 1/R^2$ for the Higgs mass and $\propto 1/R^4$ for the cosmological constant, where $R$ is the compactification radius. We also evaluate the Casimir energy in supersymmetric extra-dimensional models. The contributions from bulk fermions and bulk bosons are not offset because we choose SUSY breaking boundary conditions. The non-zero supersymmetric Casimir corrections from extra dimensions undoubtedly contribute to the Higgs mass and the cosmological constant. We conclude the coefficients of such corrections are enhanced compared to the case without bulk supersymmetry.

Highlights

  • The extra dimension has been discussed for more than 80 years

  • We investigate regularization of the one-loop quantum corrections with infinite Kaluza-Klein (KK) states and evaluate Casimir vacuum energy from extra dimensions

  • We evaluate the correction by the dimensional regularization method without exchanging the summations and the loop integrals

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Summary

INTRODUCTION

The extra dimension has been discussed for more than 80 years. Famously, Kaluza and Klein [1,2] introduced an additional compactified dimension and suggested that our spacetime needs to have more than four dimensions to unify gravity and classical electrodynamics. As the most troublesome issues, there have existed the fine-tuning of the Higgs boson mass and the cosmological constant [8] These dimensional parameters receive quantum corrections of the ultraviolet (UV) cutoff scale ΛUV [9] and they quadratically or quartically diverge.. The Kaluza-Klein regularization assumes exchanging loop integrals and summation of all the KK states, and regularizes infinite divergences with KK summation using the zeta function formula Adopting this method, we can regularize the infinite KK corrections and clearly obtain finite values that correspond to the Casimir energy from the extra dimension.

CASIMIR ENERGY
Casimir corrections for the Higgs mass with Kaluza-Klein regularization
Casimir corrections for the Higgs mass with dimensional regularization
CASIMIR CORRECTIONS FROM SUPERSYMMETRIC EXTRA DIMENSIONS
SUMMARY AND CONCLUSION
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