Ionization Waves of Arbitrary Velocity

Flying focus is a technique that uses a chirped laser beam focused by a highly chromatic lens to produce an extended focal region within which the peak laser intensity can propagate at any velocity. When that intensity is high enough to ionize a background gas, an ionization wave will track the inte...

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Veröffentlicht in:Physical review letters 2018-06, Vol.120 (22), p.225001-225001, Article 225001
Hauptverfasser: Turnbull, D, Franke, P, Katz, J, Palastro, J P, Begishev, I A, Boni, R, Bromage, J, Milder, A L, Shaw, J L, Froula, D H
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Sprache:eng
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Zusammenfassung:Flying focus is a technique that uses a chirped laser beam focused by a highly chromatic lens to produce an extended focal region within which the peak laser intensity can propagate at any velocity. When that intensity is high enough to ionize a background gas, an ionization wave will track the intensity isosurface corresponding to the ionization threshold. We report on the demonstration of such ionization waves of arbitrary velocity. Subluminal and superluminal ionization fronts were produced that propagated both forward and backward relative to the ionizing laser. All backward and all superluminal cases mitigated the issue of ionization-induced refraction that typically inhibits the formation of long, contiguous plasma channels.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.120.225001