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Toward compact and ultra-intense laser-based soft x-ray lasers

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Abstract
We report here recent work on an optical field ionized (OFI), high-order harmonic-seeded EUV laser. The amplifying medium is a plasma of nickel-like krypton obtained by OFI when focusing a 1 J, 30 fs, circularly-polarized, infrared pulse into a krypton-filled gas cell or krypton gas jet. The lasing transition is the 3d(9)4d (J = 0) -> 3d(9)4p (J = 1) transition of Ni-like krypton ions at 32.8 nm and is pumped by collisions with hot electrons. The gain dynamics was probed by seeding the amplifier with a high-order harmonic pulse at different delays. The gain duration monotonically decreased from 7 ps to an unprecedented shortness of 450 fs full width at half-maximum as the amplification peak rose from 150 to 1200 with an increase of the plasma density from 3 x 10(18) to 1.2 x 10(20) cm(-3). The integrated energy of the EUV laser pulse was also measured, and found to be around 2 mu J. It is to be noted that in the ASE mode, longer amplifiers were achieved (up to 2 cm), yielding EUV outputs up to 14 mu J.
Author(s)
Sebban, S.Depresseux, A.Oliva, E.Gautier, J.Tissandier, F.Nejdl, J.Kozlova, M.Maynard, G.Goddet, J. P.Tafzi, A.Lifschitz, A.Kim, Hyung TaekJacquemot, S.Rousseau, P.Zeitoun, P.Rousse, A.
Issued Date
2018-01
Type
Article
DOI
10.1088/1361-6587/aa8aaf
URI
https://scholar.gist.ac.kr/handle/local/13441
Publisher
Institute of Physics Publishing
Citation
Plasma Physics and Controlled Fusion, v.60, no.1
ISSN
0741-3335
Appears in Collections:
ETC > 1. Journal Articles
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