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Ulrike woggon berlin

2019-08-24 11:36

Ulrike Woggon 49(0)30 ErnstRuskaGebude Room ER 197 email query. Prof. Eichler Prof. Dr. Ing. Joachim Eichler 49(0) 30 ErnstRuskaGebude Room ER 193 email query. Sekretariat Jenny Schwadtke 49 (0) 30 314 ErnstRuskaGebude Room ER 198Ulrike K. Woggon is affiliated with Technical University of Berlin, The Optical Society of America Stay informed and uptodate on your network with RelSci news and business alerting service. Nurture your network and further your business goals with smart intelligence ulrike woggon berlin

PhD Study in the Semiconductor Optics Group, Department of Physics, HumboldtUniversity Berlin, Graduated with the academic degree Dr. rer. nat. (Experimental Physics) from HumboldtUniversity Berlin in: Research Scientist at the Department of Physics of HumboldtUniversity Berlin

Ulrike woggon berlin free

Hanjo Rhee Oliver Lux Stefan Meister Ulrike Woggon Alexander A Kaminskii Hans Joachim Eichler Opt Lett 2011 May; 36(9): Institute of Optics and Atomic Physics, Technische Universitt Berlin, Berlin, Germany.

Ulrike Woggon has published more than 190 peerreviewed journal papers and several book chapters. Her current research interests are focused on ultrafast spectroscopy of semiconductor quantum dots, on nanophotonics, in particular semiconductor nanostructures of mixed 0D2D dimensionality, on nanoplasmonics with hybrid materials and others.

The humancontrolled creation, occupation and readingout of quantum states by means of light is a great dream of modern quantum physics, Professor Dr Ulrike Woggon, a scientist at the Department of Optics and Atomic Physics (Institut fr Optik und Atomare Physik) at TU Berlin, says enthusiastically.

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Ulrike Woggon's research while affiliated with Technische Universitt Berlin and other places. Overview. Publications (143)

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Prof. Ulrike Woggon Technische Univ Berlin. SPIE Involvement: Retrieving Data, please wait CONTACT DETAILS. Sign In. Sign In to send a private message or

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This book presents an overview of the current understanding of the physics of zerodimensional semiconductors. It concentrates mainly on quantum dots of widegap semiconductors, but touches also on zerodimensional systems based on silicon and IIIV materials. After providing the reader with a

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