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Ionography of submicron foils and nanostructures using ion flow generated in fs-laser cluster plasma

Faenov, A. Ya.; Pikuz, T. A.; Pikuz, S. A.*; Fukuda, Yuji; Kando, Masaki; Kotaki, Hideyuki; Homma, Takayuki; Kawase, Keigo; Kameshima, Takashi*; Pirozhkov, A. S.; Yogo, Akifumi; Tampo, Motonobu; Kartashev, V.*; Skobelev, I. Yu.*; Gasilov, S. V.*; Boldarev, A. S.*; Gasilov, V. A.*; Magunov, A.*; Kar, S.*; Borghesi, M.*; Giulietti, A.*; Cecchetti, C. A.*; Mori, Michiaki; Sakaki, Hironao; Hayashi, Yukio; Bolton, P. R.; Nakamura, Tatsufumi; Daido, Hiroyuki; Tajima, Toshiki*; Kato, Yoshiaki* ; Bulanov, S. V.

The intense isotropic source of multicharged ions with energy above 300 keV was produced by femtosecond Ti:Sa laser pulses with intensity 4$$times$$10$$^{17}$$ W/cm$$^{2}$$ absorbed in the supersonic jet of the mixed He and CO$$_{2}$$ gases. The spatial resolution of the ionographic image not worse than 600 nm was provided. A difference in object thickness of 100 nm was resolved very well for Zr and polymer foils both.

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Category:Physics, Fluids & Plasmas

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