CP violation in heavy MSSM Higgs scenarios

被引:0
作者
M. Carena
J. Ellis
J. S. Lee
A. Pilaftsis
C. E. M. Wagner
机构
[1] Fermi National Accelerator Laboratory,Enrico Fermi Institute
[2] University of Chicago,Kavli Institute for Cosmological Physics
[3] University of Chicago,Theoretical Particle Physics and Cosmology Group, Department of Physics
[4] King’s College London,Department of Physics
[5] Theory Division,Consortium for Fundamental Physics, School of Physics and Astronomy
[6] CERN,undefined
[7] Chonnam National University,undefined
[8] University of Manchester,undefined
[9] HEP Division,undefined
[10] Argonne National Laboratory,undefined
来源
Journal of High Energy Physics | / 2016卷
关键词
Supersymmetry; CP violation; Hadron-Hadron scattering; Higgs physics;
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学科分类号
摘要
We introduce and explore new heavy Higgs scenarios in the Minimal Supersymmetric Standard Model (MSSM) with explicit CP violation, which have important phenomenological implications that may be testable at the LHC. For soft supersymmetry-breaking scales MS above a few TeV and a charged Higgs boson mass MH+ above a few hundred GeV, new physics effects including those from explicit CP violation decouple from the light Higgs boson sector. However, such effects can significantly alter the phenomenology of the heavy Higgs bosons while still being consistent with constraints from low-energy observables, for instance electric dipole moments. To consider scenarios with a charged Higgs boson much heavier than the Standard Model (SM) particles but much lighter than the supersymmetric particles, we revisit previous calculations of the MSSM Higgs sector. We compute the Higgs boson masses in the presence of CP violating phases, implementing improved matching and renormalization-group (RG) effects, as well as two-loop RG effects from the effective two-Higgs Doublet Model (2HDM) scale MH± to the scale MS. We illustrate the possibility of non-decoupling CP-violating effects in the heavy Higgs sector using new benchmark scenarios named [inline-graphic not available: see fulltext].
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