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// Workers AI · dad joke modeIs Rupert Huber a hub for physics?

From Wikipedia, the free encyclopedia
Rupert Huber
Born1973 (age 5253)
Alma materUniversity of California, Berkeley, Technical University of Munich
Known forResearch in terahertz technology and semiconductor physics

Rupert Huber (born 1973, in Traunstein)[1] is a German physicist and university professor.[2] Huber is known for his research in terahertz technology and semiconductor physics.[3][4]

Career

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Huber attended the Technical University of Munich where he majored in physics. He was awarded a PhD in 2003 from University of California, Berkeley. In 2010 he became a professor at the University of Regensburg.[5]

He is particularly well known for his research on terahertz physics at the interface between optics and electronics.[6] In the framework of so-called lightwave electronics, his research group uses the carrier field of light as an ultrafast electrical bias.[7][8][9] He was the first to resolve key quantum dynamics on the sub-cycle time scale, such as Bloch oscillations in bulk semiconductors,[10][11] quasiparticle collisions,[12][13] or high-harmonic generation.[13][11] He also works on ultrafast nanoscopy.[14][15] In a close collaboration, the research groups of Rupert Huber and Jascha Repp (also at the University of Regensburg) demonstrated a lightwave scanning tunneling microscope in 2016, which allowed the motion of a single molecule to be directly resolved in space and time for the first time.[16][17]

Awards

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  • 2004: Feodor Lynen Research Fellowship from the Alexander von Humboldt Foundation
  • 2007: Emmy-Noether grant and DFG junior research group
  • 2008: European THz Young Investigator Award from the European Optical Society
  • 2009: Rudolf Kaiser Prize of the Donors' Association for German Science
  • 2012: ERC Starting Grant (European Research Council)
  • 2016: Prize for good teaching at the state universities in Bavaria
  • 2019: Gottfried Wilhelm Leibniz Prize[5]
  • 2019: Appointment as Fellow of the Optical Society of America (OSA)

References

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  1. "Leibniz-Preis: Von ultraschnellen Phänomenen und Nanomagnetismus | pro-physik.de". www.pro-physik.de.
  2. "Newsmeldung – Universität Regensburg". www.uni-regensburg.de.
  3. "Lehrstuhl Huber". www.physik.uni-regensburg.de.
  4. "DFG – Deutsche Forschungsgemeinschaft – Prof. Dr. Rupert Huber – Gottfried Wilhelm Leibniz-Preisträger 2019". www.dfg.de.
  5. 1 2 "DFG, German Research Foundation – Prof. Dr. Rupert Huber". www.dfg.de.
  6. "Gottfried Wilhelm Leibniz-Preisträger 2019: Rupert Huber". dfg.de (in German). Retrieved 2023-11-11.
  7. Alexander Schlaak (2014-01-20). "Pressemitteilung: Was Elektronen zum Zittern bringt". Universität Regensburg (in German). Archived from the original on 2016-06-17. Retrieved 2019-01-17.
  8. Cordula Böll (2015-07-30). "Pressemitteilung: Superschneller Wellenritt im Kristall". Universität Regensburg (in German). Archived from the original on 2016-06-17. Retrieved 2019-01-17.
  9. Margit Scheid (2018-09-26). "Pressemitteilung: Höchste Taktraten lassen Elektronik kalt". Universität Regensburg (in German). Archived from the original on 2019-01-19. Retrieved 2019-01-17.
  10. Alexander Schlaak (2014-01-20). "Pressemitteilung: Was Elektronen zum Zittern bringt". Universität Regensburg (in German). Archived from the original on 2016-06-17. Retrieved 2019-01-17.
  11. 1 2 Cordula Böll (2015-07-30). "Pressemitteilung: Superschneller Wellenritt im Kristall". Universität Regensburg (in German). Archived from the original on 2016-06-17. Retrieved 2019-01-17.
  12. Alexander Schlaak (2016-05-12). "Pressemitteilung: Teilchenbeschleuniger für Quasiteilchen". Universität Regensburg (in German). Archived from the original on 2019-01-19. Retrieved 2019-01-17.
  13. 1 2 Claudia Kulke (2017-03-13). "Pressemitteilung: Wie Kristalle Wellen schlagen". Universität Regensburg (in German). Archived from the original on 2017-03-31. Retrieved 2019-01-17.
  14. Margit Adler (2014-10-05). "Pressemitteilung: Die Nano-Welt als Zeitlupenfilm". Universität Regensburg (in German). Archived from the original on 2019-01-19. Retrieved 2019-01-17.
  15. Claudia Kulke (2016-12-12). "Pressemitteilung: Blitzschneller Schalter für Elektronenwellen". Universität Regensburg (in German). Archived from the original on 2017-01-05. Retrieved 2019-01-17.
  16. "Blitzschnelles Zeitlupen-Mikroskop verfolgt die Bewegung eines einzelnen Moleküls" (in German). Retrieved 2019-01-17.
  17. Lindinger, Manfred. "Supermikroskop: Der Chemie in Zeitlupe zusehen" (in German). ISSN 0174-4909. Retrieved 2019-01-17.
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