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Higgs Vacuum Stability in a Mass-Dependent Renormalisation Scheme

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arxiv 1405.1975 v2 pith:ONWADW7F submitted 2014-05-08 hep-ph gr-qchep-th

Higgs Vacuum Stability in a Mass-Dependent Renormalisation Scheme

classification hep-ph gr-qchep-th
keywords vacuumhiggsrenormalisationstabilityabsoluteelectroweakfindingmass-dependent
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Using a physical renormalisation scheme we derive mass-dependent renormalisation group equations for the running of the Higgs quartic coupling within the Standard Model. Subsequently, we accurately take into account weak scale thresholds, resulting in a reduction of the error in the determination of the maximum $M_t$ required for absolute stability of the vacuum to 0.28 GeV. For the first time, we conclusively establish the fate of the electroweak vacuum, finding that absolute stability of the Higgs vacuum state is excluded at 99.98% C.L. We also discuss the consequences when this new result is combined with the BICEP Collaboration's recent observation of B-mode polarisation in the cosmic microwave background, finding the Standard Model electroweak vacuum lifetime to be too short to have survived inflation. The implications for inflationary and new physics models are also discussed.

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