Difference between revisions of "User:Weine Olovsson (NSC)"

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|last name=Olovsson
 
|last name=Olovsson
 
|centre=NSC
 
|centre=NSC
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|fte=90
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|snic ae financing=
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|other ae financing=
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|financing=
 
|fields=Computational materials science
 
|fields=Computational materials science
|other activities=50% research at IFM Materials Science
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|general activities= Application support, installation and help
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|other activities=10% research at IFM, Theoretical Physics
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|image=weine_olovsson.jpg
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|office=House G; Linköpings universitet; SE-581 83 Linköping
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== Quick facts ==
 
== Quick facts ==
* Or any other heading.  
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* Ph.D. in Physics at Uppsala University 2005.  
* This part is clear text and very much up to you.
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* Working at Linköping University since May 2011.
* Bullet lists are good
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* My main research topic is theoretical spectroscopy, for example XPS (core-level binding energy shifts), XAS and RIXS (using e.g. the Bethe-Salpeter equation).
* for the lazy
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-->
 
 
== Expertise ==
 
== Expertise ==
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* [[expertise::VASP]]
 
* [[expertise::WIEN2k]]
 
* [[expertise::WIEN2k]]
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* [[expertise::exciting-code]]
* [[expertise::mass spectrometry]]
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* [[expertise::Elk]]
* [[expertise::flux capacitor calibration]]
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* [[expertise::FEFF]]
-->
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* [[expertise::Greens]]
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== Projects ==
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* [[project::SNIC coordinated training]]
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== More information ==
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Helping users with basic and more advanced support for software such as VASP, Quantum Espresso, WIEN2k. Experience with and also helping for many other codes in the area of computational materials science. Benchmarking and testing of codes.

Latest revision as of 14:41, 27 February 2020

Weine olovsson.jpg

Weine Olovsson (NSC)

Application expert in Computational materials science, 90% full time equivalent

General activities
Application support, installation and help
Other activities
10% research at IFM, Theoretical Physics
Office
House G
Linköpings universitet
SE-581 83 Linköping

Quick facts

  • Ph.D. in Physics at Uppsala University 2005.
  • Working at Linköping University since May 2011.
  • My main research topic is theoretical spectroscopy, for example XPS (core-level binding energy shifts), XAS and RIXS (using e.g. the Bethe-Salpeter equation).

Expertise

Projects

More information

Helping users with basic and more advanced support for software such as VASP, Quantum Espresso, WIEN2k. Experience with and also helping for many other codes in the area of computational materials science. Benchmarking and testing of codes.