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Supersymmetric models in light of improved Higgs mass calculations

Journal Article · · European Physical Journal. C, Particles and Fields
 [1];  [2];  [3];  [4];  [2];  [5];  [2];  [6];  [7];  [8];  [9];  [9];  [10]
  1. Paul Sherrer Inst. Villigen (Switzerland); DOE/OSTI
  2. Max Planck Inst. fuer Physik, Munich (Germany)
  3. King's College, London (United Kingdom); National Inst. of Chemical Physics and Biophysics, Ravala (Estonia); European Organization for Nuclear Research (CERN), Geneva (Switzerland)
  4. Korea Inst. for Advanced Study (KIAS), Seoul (Korea)
  5. Univ. Autonoma de Madrid Cantoblanco (Spain); Campus of International Excellence UAM+CSIC, Madrid (Spain); Inst. de Fisica de Cantabria (CSIC-UC), Santander (Spain)
  6. Univ. of Minnesota, Minneapolis, MN (United States)
  7. National Centre for Scientific Research (CNRS), Paris (France)
  8. Univ. of Southern Denmark, Odense (Denmark)
  9. Deutsches Elektronen-Synchrotron (DESY), Hamburg (Germany)
  10. Univ. of Tokyo (Japan)
We discuss the parameter spaces of supersymmetry (SUSY) scenarios taking into account the improved Higgs-mass prediction provided by FeynHiggs 2.14.1. Among other improvements, this prediction incorporates three-loop renormalization-group effects and two-loop threshold corrections, and can accommodate three separate mass scales: $$m_{\tilde{q}}$$ (for squarks), $$m_{\tilde{g}}$$(for gluinos) and $$m_{\tilde{\chi }}$$ (for electroweakinos). Furthermore, it contains an improved treatment of the $$\overline{\mathrm {DR}}$$ scalar top parameters avoiding problems with the conversion to on-shell parameters, that yields more accurate results for large SUSY-breaking scales. We first consider the CMSSM, in which the soft SUSY-breaking parameters $$m_0$$ and $$m_{1/2}$$ are universal at the GUT scale, and then sub-GUT models in which universality is imposed at some lower scale. In both cases, we consider the constraints from the Higgs-boson mass $$M_h$$ in the bulk of the $$(m_0, m_{1/2})$$ plane and also along stop coannihilation strips where sparticle masses may extend into the multi-TeV range. We then consider the minimal anomaly-mediated SUSY-breaking scenario, in which large sparticle masses are generic. In all these scenarios the substantial improvements between the calculations of $$M_h$$ in FeynHiggs 2.14.1 and FeynHiggs 2.10.0, which was used in an earlier study, change significantly the preferred portions of the models’ parameter spaces. Finally, we consider the pMSSM11, in which sparticle masses may be significantly smaller and we find only small changes in the preferred regions of parameter space.
Research Organization:
Univ. of Minnesota, Minneapolis, MN (United States)
Sponsoring Organization:
MEINCOP (Spain); USDOE Office of Science (SC); United Kingdom STFC
Grant/Contract Number:
SC0011842
OSTI ID:
1611692
Alternate ID(s):
OSTI ID: 22775312
Journal Information:
European Physical Journal. C, Particles and Fields, Journal Name: European Physical Journal. C, Particles and Fields Journal Issue: 2 Vol. 79; ISSN 1434-6044
Publisher:
SpringerCopyright Statement
Country of Publication:
United States
Language:
English

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Higgs boson masses and mixings in the complex MSSM with two-loop top-Yukawa-coupling corrections text January 2014
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Reconciling EFT and hybrid calculations of the light MSSM Higgs-boson mass text January 2017
Higgs mass prediction in the MSSM at three-loop level in a pure $\overline{\text{DR}}$ context text January 2017
Likelihood Analysis of the pMSSM11 in Light of LHC 13-TeV Data text January 2017
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Realistic Anomaly-mediated Supersymmetry Breaking text January 1999
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Light Scalar Top Quarks and Supersymmetric Dark Matter text January 1999
Soft Supersymmetry Breaking in KKLT Flux Compactification text January 2005
Anomaly mediation in supergravity theories text January 1999
The CMSSM and NUHM1 after LHC Run 1 text January 2014
Supersymmetric dark matter after LHC run 1 text January 2015
Likelihood analysis of the minimal AMSB model text January 2017
Likelihood analysis of supersymmetric SU(5) GUTs text January 2017
Improved predictions for intermediate and heavy supersymmetry in the MSSM and beyond text January 2017

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