Higgs mass implications on the stability of the electroweak vacuum

被引:429
作者
Elias-Miro, Joan [2 ,3 ]
Espinosa, Jose R. [2 ,3 ,4 ]
Giudice, Gian F. [5 ]
Isidori, Gino [1 ,5 ]
Riotto, Antonio [5 ,6 ]
Strumia, Alessandro [7 ,8 ,9 ]
机构
[1] Ist Nazl Fis Nucl, Lab Nazl Frascati, Frascati, Italy
[2] Univ Aut Barcelona, IFAE, Barcelona 08193, Spain
[3] Univ Aut Barcelona, Dep Fis, Barcelona 08193, Spain
[4] ICREA, Barcelona, Spain
[5] CERN, Div Theory, CH-1211 Geneva 23, Switzerland
[6] Ist Nazl Fis Nucl, Sez Padova, I-35131 Padua, Italy
[7] Ist Nazl Fis Nucl, Milan, Italy
[8] Univ Pisa, Dipartimento Fis, I-56100 Pisa, Italy
[9] NICPB, Tallinn, Estonia
关键词
STANDARD-MODEL; BOSON MASS; TOP-QUARK; BOUNDS; METASTABILITY; INSTABILITY; CONSTRAINTS;
D O I
10.1016/j.physletb.2012.02.013
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We update instability and metastability bounds of the Standard Model electroweak vacuum in view of the recent ATLAS and CMS Higgs results. For a Higgs mass in the range 124-126 GeV, and for the current central values of the top mass and strong coupling constant, the Higgs potential develops an instability around 10(11) GeV, with a lifetime much longer than the age of the Universe. However, taking into account theoretical and experimental errors, stability up to the Planck scale cannot be excluded. Stability at finite temperature implies an upper bound on the reheat temperature after inflation, which depends critically on the precise values of the Higgs and top masses. A Higgs mass in the range 124-126 GeV is compatible with very high values of the reheating temperature, without conflict with mechanisms of baryogenesis such as leptogenesis. We derive an upper bound on the mass of heavy right-handed neutrinos by requiring that their Yukawa couplings do not destabilize the Higgs potential. (C) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:222 / 228
页数:7
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