Institute for Theoretical Particle Physics (TTP)

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research [2018/10/30 17:51] asteriadisresearch [2019/07/20 14:14] – angelegt delto
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-====== Forschungsgruppen ======+====== Research Groups ======
  
 The Institute for Theoretical Particle Physics (TTP) consists of three research groups.  You can find description of their activities below.  The Institute for Theoretical Particle Physics (TTP) consists of three research groups.  You can find description of their activities below. 
-Members of the Institute collaborate very closely with  +Members of the Institute collaborate very closely with the [[http://www.ikp.kit.edu/particle_theory|research group in theoretical particle physics]] at the Institute for Nuclear Physics (IKP).
- [[http://www.ikp.kit.edu/particle_theory|the research group in theoretical  +
-particle physics ]] at the Institute for Nuclear Physics, lead  by  [[:memberpages:blanke|Dr. Monika Blanke]]. +
-\\+
 \\ \\
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 +<a href="https://www.ttp.kit.edu/en/research/melnikov">
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 amplitudes, Higgs physics, top quarks and vector bosons. amplitudes, Higgs physics, top quarks and vector bosons.
  
-[[:research:melnikov|Mehr]]+[[:en:research:melnikov|Detailed information]]
  
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 +<a href="https://www.ttp.kit.edu/en/research/nierste">
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 Quark and lepton flavour physics, with emphasis on flavour-changing neutral current (FCNC) processes: Improvement of Standard-Model predictions for decay rates and CP asymmetries. Calculations in models of new physics, e.g. with enlarged gauge groups, extended Higgs sectors, supersymmetry, or a link to Dark Matter.   Quark and lepton flavour physics, with emphasis on flavour-changing neutral current (FCNC) processes: Improvement of Standard-Model predictions for decay rates and CP asymmetries. Calculations in models of new physics, e.g. with enlarged gauge groups, extended Higgs sectors, supersymmetry, or a link to Dark Matter.  
  
-[[:research:nierste|Mehr]]+[[:en:research:nierste|Detailed information]]
  
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 +<a href="https://www.ttp.kit.edu/en/research/steinhauser">
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 This includes the precise determination of SM parameters (e.g. quark This includes the precise determination of SM parameters (e.g. quark
 masses and strong coupling), higher order corrections to Higgs boson masses and strong coupling), higher order corrections to Higgs boson
-and top quark production, to B meson decays, and to the the muon+and top quark production, to B meson decays, and to the muon
 anomalous magnetic moment. anomalous magnetic moment.
  
  
-[[:research:steinhauser|Mehr]] +[[:en:research:steinhauser|Detailed information]]
  
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