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Is SMEFT enough?
被引:0
|作者:
Timothy Cohen
Nathaniel Craig
Xiaochuan Lu
Dave Sutherland
机构:
[1] University of Oregon,Institute for Fundamental Science
[2] University of California,Department of Physics
[3] INFN Sezione di Trieste,undefined
来源:
Journal of High Energy Physics
|
/
2021卷
关键词:
Beyond Standard Model;
Effective Field Theories;
Higgs Physics;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
There are two canonical approaches to treating the Standard Model as an Effective Field Theory (EFT): Standard Model EFT (SMEFT), expressed in the electroweak symmetric phase utilizing the Higgs doublet, and Higgs EFT (HEFT), expressed in the broken phase utilizing the physical Higgs boson and an independent set of Goldstone bosons. HEFT encompasses SMEFT, so understanding whether SMEFT is sufficient motivates identifying UV theories that require HEFT as their low energy limit. This distinction is complicated by field redefinitions that obscure the naive differences between the two EFTs. By reformulating the question in a geometric language, we derive concrete criteria that can be used to distinguish SMEFT from HEFT independent of the chosen field basis. We highlight two cases where perturbative new physics must be matched onto HEFT: (i) the new particles derive all of their mass from electroweak symmetry breaking, and (ii) there are additional sources of electroweak symmetry breaking. Additionally, HEFT has a broader practical application: it can provide a more convergent parametrization when new physics lies near the weak scale. The ubiquity of models requiring HEFT suggests that SMEFT is not enough.
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