Y
Yitzhak Maron
Researcher at Weizmann Institute of Science
Publications - 227
Citations - 3197
Yitzhak Maron is an academic researcher from Weizmann Institute of Science. The author has contributed to research in topics: Plasma & Plasma diagnostics. The author has an hindex of 28, co-authored 225 publications receiving 2977 citations. Previous affiliations of Yitzhak Maron include Cornell University.
Papers
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Journal ArticleDOI
Improved Symmetry Greatly Increases X-Ray Power from Wire-Array Z -Pinches
T. W. L. Sanford,G. O. Allshouse,B.M. Marder,Thomas J. Nash,R.C. Mock,R. B. Spielman,J. F. Seamen,J. S. McGurn,D. Jobe,T. L. Gilliland,M. Vargas,Kenneth W. Struve,William A. Stygar,M.R. Douglas,Maurice Keith Matzen,James H. Hammer,J. S. De Groot,J. L. Eddleman,D.L. Peterson,D. Mosher,K.G. Whitney,J.W. Thornhill,P. E. Pulsifer,John P. Apruzese,Yitzhak Maron +24 more
TL;DR: A systematic experimental study of annular aluminum-wire Z-pinches on a 20-TW electrical generator shows that the measured spatial characteristics and emitted x-ray power agree more closely with rad-hydro simulations when large numbers of wires are used.
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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!.
Journal ArticleDOI
Accelerated recombination due to resonant deexcitation of metastable states
Yu. Ralchenko,Yitzhak Maron +1 more
TL;DR: In this article, a fully time-dependent collisional-radiative (CR) model for stripped ions of carbon recombining in a cold dense plasma demonstrates an order of magnitude faster recombination of He-like ions.
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High energy heavy ion jets emerging from laser plasma generated by long pulse laser beams from the NHELIX laser system at GSI
Gabriel Schaumann,Marius Schollmeier,G. Rodriguez-Prieto,A. Blazevic,Erik Brambrink,M. Geissel,S. Korostiy,P. Pirzadeh,Markus Roth,Frank B. Rosmej,A. Ya. Faenov,T. A. Pikuz,Konstantin Tsigutkin,Yitzhak Maron,N.A. Tahir,Dieter H. H. Hoffmann +15 more
TL;DR: In this paper, high energy heavy ions were generated in laser produced plasma at moderate laser energy, with a large focal spot size of 0.5 mm diameter, and the velocity distribution was measured via an observation of Doppler shifted characteristic transition lines.
Journal ArticleDOI
Ion separation due to magnetic field penetration into a multispecies plasma.
TL;DR: It is found that ion separation occurs in which a light-ion plasma is pushed ahead while a heavy- ion plasma lags behind the magnetic piston, and most of the momentum imparted by the magnetic field pressure is taken by the reflected light ions.