Literature DB >> 23031109

Controlling fast-electron-beam divergence using two laser pulses.

R H H Scott1, C Beaucourt, H-P Schlenvoigt, K Markey, K L Lancaster, C P Ridgers, C M Brenner, J Pasley, R J Gray, I O Musgrave, A P L Robinson, K Li, M M Notley, J R Davies, S D Baton, J J Santos, J-L Feugeas, Ph Nicolaï, G Malka, V T Tikhonchuk, P McKenna, D Neely, S J Rose, P A Norreys.   

Abstract

This Letter describes the first experimental demonstration of the guiding of a relativistic electron beam in a solid target using two colinear, relativistically intense, picosecond laser pulses. The first pulse creates a magnetic field that guides the higher-current, fast-electron beam generated by the second pulse. The effects of intensity ratio, delay, total energy, and intrinsic prepulse are examined. Thermal and Kα imaging show reduced emission size, increased peak emission, and increased total emission at delays of 4-6 ps, an intensity ratio of 10∶1 (second:first) and a total energy of 186 J. In comparison to a single, high-contrast shot, the inferred fast-electron divergence is reduced by 2.7 times, while the fast-electron current density is increased by a factor of 1.8. The enhancements are reproduced with modeling and are shown to be due to the self-generation of magnetic fields. Such a scheme could be of considerable benefit to fast-ignition inertial fusion.

Year:  2012        PMID: 23031109     DOI: 10.1103/PhysRevLett.109.015001

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  3 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 relativistic-electron beam collimation using two consecutive laser pulses.

Authors:  Sophia Malko; Xavier Vaisseau; Frederic Perez; Dimitri Batani; Alessandro Curcio; Michael Ehret; Javier Honrubia; Katarzyna Jakubowska; Alessio Morace; João Jorge Santos; Luca Volpe
Journal:  Sci Rep       Date:  2019-10-01       Impact factor: 4.379

3.  Direct observation of imploded core heating via fast electrons with super-penetration scheme.

Authors:  T Gong; H Habara; K Sumioka; M Yoshimoto; Y Hayashi; S Kawazu; T Otsuki; T Matsumoto; T Minami; K Abe; K Aizawa; Y Enmei; Y Fujita; A Ikegami; H Makiyama; K Okazaki; K Okida; T Tsukamoto; Y Arikawa; S Fujioka; Y Iwasa; S Lee; H Nagatomo; H Shiraga; K Yamanoi; M S Wei; K A Tanaka
Journal:  Nat Commun       Date:  2019-12-09       Impact factor: 14.919

  3 in total

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