O
O. N. Rosmej
Researcher at Technische Universität Darmstadt
Publications - 38
Citations - 851
O. N. Rosmej is an academic researcher from Technische Universität Darmstadt. The author has contributed to research in topics: Ion & Plasma. The author has an hindex of 13, co-authored 32 publications receiving 751 citations.
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Journal ArticleDOI
Present and future perspectives for high energy density physics with intense heavy ion and laser beams
Dieter H. H. Hoffmann,Abel Blazevic,P. Ni,O. N. Rosmej,Markus Roth,Naeem A. Tahir,Anna Tauschwitz,Serban Udrea,Dmitry Varentsov,K. Weyrich,Yitzhak Maron +10 more
TL;DR: In this paper, a beam-plasma interaction experiment was carried out using the heavy ion synchrotron at the GSI, Darmstadt, Germany! accelerator with two high-energy laser systems: petawatt high energy laser for ion experiments (PHELIX! and nanosecond high energy LEM) and NHELIX!.
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Commissioning and early experiments of the PHELIX facility
Vincent Bagnoud,Bastian Aurand,A. Blazevic,Stefan Borneis,C. Bruske,B. Ecker,B. Ecker,U. Eisenbarth,J. Fils,A. Frank,Erhard Gaul,S. Goette,Constantin Haefner,T. Hahn,K. Harres,H.-M. Heuck,D. C. Hochhaus,Dieter H. H. Hoffmann,D. Javorková,Hans-Jürgen Kluge,Thomas Kuehl,S. Kunzer,M. Kreutz,T. Merz-Mantwill,Paul Neumayer,E. Onkels,D. Reemts,O. N. Rosmej,Markus Roth,T. Stoehlker,T. Stoehlker,Anna Tauschwitz,Bernhard Zielbauer,D. Zimmer,D. Zimmer,K. Witte +35 more
TL;DR: The Petawatt High Energy Laser for heavy Ion eXperiments (PHELIX) as discussed by the authors has been commissioned for operation in stand-alone mode and, in combination with ions accelerated up to an energy of 13 MeV/u by the heavy ion accelerator UNILAC enables a large variety of unique experiments.
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The role of hot electron refluxing in laser-generated K-alpha sources
Paul Neumayer,Bastian Aurand,M. Basko,B. Ecker,Paul Gibbon,D. C. Hochhaus,A. Karmakar,E. Kazakov,Th. Kühl,C. Labaune,O. N. Rosmej,An. Tauschwitz,Bernhard Zielbauer,D. Zimmer +13 more
TL;DR: In this article, the contribution of refluxing electrons in the production of K-alpha radiation from high-intensity laser irradiated thin targets has been performed, and it is shown that refluxed electrons play a dominant role in high-energy laser driven K- alpha generation and have to be taken into account in designing targets for laser driven high-flux K alpha sources.
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Interaction of annular-focused laser beams with solid targets
Nikolay Andreev,Mikhail E. Povarnitsyn,M E Veysman,A. Ya. Faenov,Pavel Levashov,Konstantin V. Khishchenko,T. A. Pikuz,A. I. Magunov,O. N. Rosmej,Abel Blazevic,A. Pelka,Gabriel Schaumann,Marius Schollmeier,Markus Roth +13 more
TL;DR: In this paper, a two-temperature, 2D hydrodynamic code Hydro-ELectro-IOnization-2D (HELIO2D), which takes into account self-consistently the laser energy absorption in a target, ionization, heating, and expansion of the created plasma is elaborated.
Journal ArticleDOI
Inertial fusion energy issues of intense heavy ion and laser beams interacting with ionized matter studied at GSI-Darmstadt
Dieter H. H. Hoffmann,Abel Blazevic,S. Korostiy,P. Ni,S. A. Pikuz,Baerbel Rethfeld,O. N. Rosmej,Markus Roth,Naeem A. Tahir,Serban Udrea,Dmitry Varentsov,K. Weyrich,B. Yu. Sharkov,Yitzhak Maron +13 more
TL;DR: In this paper, the interaction mechanism of heavy ion beams with matter has been continued and experiments to study interaction mechanism with matter have been continued, where solid Pb-and Ta-targets have been heated to the level of 1 eV.