Literature DB >> 28950610

Quasistationary magnetic field generation with a laser-driven capacitor-coil assembly.

V T Tikhonchuk1, M Bailly-Grandvaux1, J J Santos1, A Poyé2.   

Abstract

Recent experiments are showing possibilities to generate strong magnetic fields on the excess of 500 T with high-energy nanosecond laser pulses in a compact setup of a capacitor connected to a single turn coil. Hot electrons ejected from the capacitor plate (cathode) are collected at the other plate (anode), thus providing the source of a current in the coil. However, the physical processes leading to generation of currents exceeding hundreds of kiloamperes in such a laser-driven diode are not sufficiently understood. Here we present a critical analysis of previous results and propose a self-consistent model for the high current generation in a laser-driven capacitor-coil assembly. It accounts for three major effects controlling the diode current: the space charge neutralization, the plasma magnetization between the capacitor plates, and the Ohmic heating of the external circuit-the coil-shaped connecting wire. The model provides the conditions necessary for transporting strongly super-Alfvenic currents through the diode on the time scale of a few nanoseconds. The model validity is confirmed by a comparison with the available experimental data.

Year:  2017        PMID: 28950610     DOI: 10.1103/PhysRevE.96.023202

Source DB:  PubMed          Journal:  Phys Rev E        ISSN: 2470-0045            Impact factor:   2.529


  2 in total

1.  Guiding of relativistic electron beams in dense matter by laser-driven magnetostatic fields.

Authors:  M Bailly-Grandvaux; J J Santos; C Bellei; P Forestier-Colleoni; S Fujioka; L Giuffrida; J J Honrubia; D Batani; R Bouillaud; M Chevrot; J E Cross; R Crowston; S Dorard; J-L Dubois; M Ehret; G Gregori; S Hulin; S Kojima; E Loyez; J-R Marquès; A Morace; Ph Nicolaï; M Roth; S Sakata; G Schaumann; F Serres; J Servel; V T Tikhonchuk; N Woolsey; Z Zhang
Journal:  Nat Commun       Date:  2018-01-09       Impact factor: 14.919

2.  Enhanced X-ray emission arising from laser-plasma confinement by a strong transverse magnetic field.

Authors:  Evgeny D Filippov; Sergey S Makarov; Konstantin F Burdonov; Weipeng Yao; Guilhem Revet; Jerome Béard; Simon Bolaños; Sophia N Chen; Amira Guediche; Jack Hare; Denis Romanovsky; Igor Yu Skobelev; Mikhail Starodubtsev; Andrea Ciardi; Sergey A Pikuz; Julien Fuchs
Journal:  Sci Rep       Date:  2021-04-14       Impact factor: 4.379

  2 in total

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