Institute for Theoretical Physics (ITP)

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start [2017/04/25 13:36] – test timezone martingstart [2019/02/08 09:35] marcel
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 +====== Welcome to the Institute for Theoretical Physics (ITP) ======
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 +<a href="https://www.itp.kit.edu//research/gieseke" title="PD Dr. S. Gieseke"><img style="width:49%;" src="https://www.itp.kit.edu/_media/gieseke_title.png" alt="PD Dr. S. Gieseke"></a>
 +<a href="https://www.itp.kit.edu/research/klinkhamer" title="Prof. Dr. F. R. Klinkhamer"><img style="width:49%;" src="https://www.itp.kit.edu/_media/klinkhamer_title.png" alt="Prof. Dr. F. R. Klinkhamer"></a>
 +<a href="https://www.itp.kit.edu/research/muehlleitner" title="Prof. Dr. M. M. Mühlleitner"><img style="width:49%;" src="https://www.itp.kit.edu/_media/muehlleitner_title.png" alt="Prof. Dr. M. M. Mühlleitner"></a>
 +<a href="https://www.itp.kit.edu/research/zeppenfeld" title="Prof. Dr. D. Zeppenfeld"><img style="width:49%;" src="https://www.itp.kit.edu/_media/zeppenfeld_title.png" alt="Prof. Dr. D. Zeppenfeld"></a>
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-[[:en:start|To the english version of these pages]]\\ +<HTML> 
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-[siehe auch [[https://www.ttp.kit.edu/|Institut für Theoretische Teilchen Physik (TTP)]] ]  \\ +The Standard Model (SM) of particle physics describes our basic understanding of the building blocks of matter and how they interact with each otherIt is an extremely successful theory that is able to describe particle physics phenomena from the scale of electroweak symmetry breaking all the way up to the Planck scaleWith the discovery of the Higgs boson in 2012 48 years after its first postulation the SM has been made structurally complete. Numerous high-precision experiments have tested the SM at the quantum level. Still, there are problems that cannot be explained within the SM, such as the nature of Dark Matter or the generation of the baryon-antibaryon asymmetry e.g. This situation calls for new physics extensions beyond the SM, entailing new particles and interactions implying new signatures to be studied at the Large Hadron Collider (LHCat CERN or future e+eand hadron colliders. 
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----- +The research at the Institute of Theoretical Physics (ITP) is centered around theoretical particle physics. Our aim is to improve our understanding of nature by making high-precision predictions for observables to be tested at present and future high-energy colliders, both for the SM and new physics extensions beyond the SMThis effort is supported by the development of Monte Carlo algorithms to understand the production at the hadronic level
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-|**Postanschrift:** | **Besuchsanschrift:** [[plan|Wie Sie uns finden]] | +
-| Karlsruher Institut für Technologie (KIT\\ Fakultät für Physik \\ Institut für Theoretische Physik (ITP) \\ Postfach 6980 \\ D-76049 Karlsruhe | Karlsruher Institut für Technologie (KIT)\\ Institut für Theoretische Physik (ITP) \\  Wolfgang-Gaede-Straße 1 \\ Physikhochhaus (Gebäude 30.23) 12OG \\  76131 Karlsruhe    | +
-|**Telefon:** +49 721 608-42081  |**Fax:** +49 721 608-43582  | \\ +
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-====== Informationen zum Institut  ====== 
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-**[[research|Arbeitsgruppen am ITP]]**\\ 
-  * [[https://www.itp.kit.edu/~gieseke/|AG Gieseke]] 
-  * [[https://www.itp.kit.edu/~maggie/|AG Mühlleitner]] 
-  * [[research:klinkhamer|AG Klinkhamer]] 
-  * [[research:zeppenfeld|AG Zeppenfeld]] 
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-  * [[http://www.terascale.de| Helmholtz-Allianz: Physik an der Teraskala]] 
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-  * [[courses|Aktuelle Vorlesungen]] 
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-====== Offene Stellen ====== 
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- Weitere Informationen finden Sie [[job|hier]]. 
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