Title of article :
Stability of subsequent-to-leading-logarithm corrections to the effective potential for radiative electroweak symmetry breaking Original Research Article
Author/Authors :
F.A. Chishtie، نويسنده , , V. Elias، نويسنده , , R.B. Mann، نويسنده , , D.G.C. McKeon، نويسنده , , T.G. Steele، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Abstract :
We demonstrate the stability under subsequent-to-leading logarithm corrections of the quartic scalar-field coupling constant λ and the running Higgs boson mass obtained from the (initially massless) effective potential for radiatively broken electroweak symmetry in the single-Higgs-doublet Standard Model. Such subsequent-to-leading logarithm contributions are systematically extracted from the renormalization group equation considered beyond one-loop order. We show λ to be the dominant coupling constant of the effective potential for the radiatively broken case of electroweak symmetry. We demonstrate the stability of λ and the running Higgs boson mass through five orders of successively subleading logarithmic corrections to the scalar-field-theory projection of the effective potential for which all coupling constants except the dominant coupling constant λ are disregarded. We present a full next-to-leading logarithm potential in the three dominant Standard Model coupling constants (t-quark-Yukawa, image, and λ) from these coupling constantsʹ contribution to two loop β- and γ-functions. Finally, we demonstrate the manifest order-by-order stability of the physical Higgs boson mass in the image range. In particular, we obtain a image physical Higgs boson mass inclusive of the t-quark-Yukawa and image coupling constants to next-to-leading logarithm order, and inclusive of the smaller image gauge coupling constants to leading logarithm order.
Journal title :
Nuclear Physics B
Journal title :
Nuclear Physics B