Ion acceleration and neutron production in hybrid gas-puff z-pinches on the GIT-12 and HAWK generators

Z-pinch experiments with a hybrid configuration of a deuterium gas puff have been carried out on the HAWK (NRL, Washington, DC) and GIT-12 (IHCE, Tomsk) pulsed power generators at 0.7 MA and 3 MA currents, respectively. On GIT-12, neutron yields reached an average value of 2 × 1012 neutrons, and deu...

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Main Authors: D. Klir, S. L. Jackson, A. V. Shishlov, V. A. Kokshenev, K. Rezac, A. R. Beresnyak, R. K. Cherdizov, J. Cikhardt, B. Cikhardtova, G. N. Dudkin, J. T. Engelbrecht, F. I. Fursov, J. Krasa, J. Kravarik, P. Kubes, N. E. Kurmaev, V. Munzar, N. A. Ratakhin, K. Turek, V. A. Varlachev
Format: Article
Language:English
Published: AIP Publishing LLC 2020-03-01
Series:Matter and Radiation at Extremes
Online Access:http://dx.doi.org/10.1063/1.5132845
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spelling doaj-5a0509dca921433ea48740969c6a14842020-11-25T03:35:28ZengAIP Publishing LLCMatter and Radiation at Extremes2468-080X2020-03-0152026401026401-1010.1063/1.5132845Ion acceleration and neutron production in hybrid gas-puff z-pinches on the GIT-12 and HAWK generatorsD. Klir0S. L. Jackson1A. V. Shishlov2V. A. Kokshenev3K. Rezac4A. R. Beresnyak5R. K. Cherdizov6J. Cikhardt7B. Cikhardtova8G. N. Dudkin9J. T. Engelbrecht10F. I. Fursov11J. Krasa12J. Kravarik13P. Kubes14N. E. Kurmaev15V. Munzar16N. A. Ratakhin17K. Turek18V. A. Varlachev19Czech Technical University in Prague, Faculty of Electrical Engineering, 16627 Prague 6, Czech RepublicPlasma Physics Division, U.S. Naval Research Laboratory, Washington, District of Columbia 20375, USAInstitute of High Current Electronics SB RAS, Tomsk, 634055, RussiaInstitute of High Current Electronics SB RAS, Tomsk, 634055, RussiaCzech Technical University in Prague, Faculty of Electrical Engineering, 16627 Prague 6, Czech RepublicPlasma Physics Division, U.S. Naval Research Laboratory, Washington, District of Columbia 20375, USAInstitute of High Current Electronics SB RAS, Tomsk, 634055, RussiaCzech Technical University in Prague, Faculty of Electrical Engineering, 16627 Prague 6, Czech RepublicCzech Technical University in Prague, Faculty of Electrical Engineering, 16627 Prague 6, Czech RepublicNational Research Tomsk Polytechnic University, Tomsk, 634050, RussiaPlasma Physics Division, U.S. Naval Research Laboratory, Washington, District of Columbia 20375, USAInstitute of High Current Electronics SB RAS, Tomsk, 634055, RussiaInstitute of Physics, Academy of Sciences of Czech Republic, 18221 Prague 8, Czech RepublicCzech Technical University in Prague, Faculty of Electrical Engineering, 16627 Prague 6, Czech RepublicCzech Technical University in Prague, Faculty of Electrical Engineering, 16627 Prague 6, Czech RepublicInstitute of High Current Electronics SB RAS, Tomsk, 634055, RussiaCzech Technical University in Prague, Faculty of Electrical Engineering, 16627 Prague 6, Czech RepublicInstitute of High Current Electronics SB RAS, Tomsk, 634055, RussiaNuclear Physics Institute, Academy of Sciences of Czech Republic, 18086 Prague, Czech RepublicNational Research Tomsk Polytechnic University, Tomsk, 634050, RussiaZ-pinch experiments with a hybrid configuration of a deuterium gas puff have been carried out on the HAWK (NRL, Washington, DC) and GIT-12 (IHCE, Tomsk) pulsed power generators at 0.7 MA and 3 MA currents, respectively. On GIT-12, neutron yields reached an average value of 2 × 1012 neutrons, and deuterons were accelerated up to an energy of 30 MeV. This was 50 times the ion energy provided by the generator driving voltage of 0.6 MV and the highest energy observed in z-pinches and dense plasma foci. To confirm these unique results independently on another device, we performed several experimental campaigns on the HAWK generator. Comparison of the experiments on GIT-12 and HAWK helped us to understand which parameters are essential for optimized neutron production. Since the HAWK generator is of a similar pulsed power architecture as GIT-12, the experiments on GIT-12 and HAWK are important for the study of how charged-particle acceleration scales with the current.http://dx.doi.org/10.1063/1.5132845
collection DOAJ
language English
format Article
sources DOAJ
author D. Klir
S. L. Jackson
A. V. Shishlov
V. A. Kokshenev
K. Rezac
A. R. Beresnyak
R. K. Cherdizov
J. Cikhardt
B. Cikhardtova
G. N. Dudkin
J. T. Engelbrecht
F. I. Fursov
J. Krasa
J. Kravarik
P. Kubes
N. E. Kurmaev
V. Munzar
N. A. Ratakhin
K. Turek
V. A. Varlachev
spellingShingle D. Klir
S. L. Jackson
A. V. Shishlov
V. A. Kokshenev
K. Rezac
A. R. Beresnyak
R. K. Cherdizov
J. Cikhardt
B. Cikhardtova
G. N. Dudkin
J. T. Engelbrecht
F. I. Fursov
J. Krasa
J. Kravarik
P. Kubes
N. E. Kurmaev
V. Munzar
N. A. Ratakhin
K. Turek
V. A. Varlachev
Ion acceleration and neutron production in hybrid gas-puff z-pinches on the GIT-12 and HAWK generators
Matter and Radiation at Extremes
author_facet D. Klir
S. L. Jackson
A. V. Shishlov
V. A. Kokshenev
K. Rezac
A. R. Beresnyak
R. K. Cherdizov
J. Cikhardt
B. Cikhardtova
G. N. Dudkin
J. T. Engelbrecht
F. I. Fursov
J. Krasa
J. Kravarik
P. Kubes
N. E. Kurmaev
V. Munzar
N. A. Ratakhin
K. Turek
V. A. Varlachev
author_sort D. Klir
title Ion acceleration and neutron production in hybrid gas-puff z-pinches on the GIT-12 and HAWK generators
title_short Ion acceleration and neutron production in hybrid gas-puff z-pinches on the GIT-12 and HAWK generators
title_full Ion acceleration and neutron production in hybrid gas-puff z-pinches on the GIT-12 and HAWK generators
title_fullStr Ion acceleration and neutron production in hybrid gas-puff z-pinches on the GIT-12 and HAWK generators
title_full_unstemmed Ion acceleration and neutron production in hybrid gas-puff z-pinches on the GIT-12 and HAWK generators
title_sort ion acceleration and neutron production in hybrid gas-puff z-pinches on the git-12 and hawk generators
publisher AIP Publishing LLC
series Matter and Radiation at Extremes
issn 2468-080X
publishDate 2020-03-01
description Z-pinch experiments with a hybrid configuration of a deuterium gas puff have been carried out on the HAWK (NRL, Washington, DC) and GIT-12 (IHCE, Tomsk) pulsed power generators at 0.7 MA and 3 MA currents, respectively. On GIT-12, neutron yields reached an average value of 2 × 1012 neutrons, and deuterons were accelerated up to an energy of 30 MeV. This was 50 times the ion energy provided by the generator driving voltage of 0.6 MV and the highest energy observed in z-pinches and dense plasma foci. To confirm these unique results independently on another device, we performed several experimental campaigns on the HAWK generator. Comparison of the experiments on GIT-12 and HAWK helped us to understand which parameters are essential for optimized neutron production. Since the HAWK generator is of a similar pulsed power architecture as GIT-12, the experiments on GIT-12 and HAWK are important for the study of how charged-particle acceleration scales with the current.
url http://dx.doi.org/10.1063/1.5132845
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