High Power Laser Science and Engineering, Volume. 9, Issue 4, 04000e62(2021)
Enhancement of pre-pulse and picosecond pedestal contrast of the petawatt J-KAREN-P laser
Fig. 2. Measured pre-pulse contrast in the J-KAREN-P laser system with the plane-parallel plates of (a) approximately 1 mm, (b) approximately 3 mm, (c) approximately 5 mm, (d) approximately 8 mm and (e) approximately 11.8 mm. The green line is for calibration (the plane-parallel plate is placed after the compressor). The blue line, red line and black filled circles are obtained with the output energies of approximately 45, 1.8 and 26 J, respectively. These energies correspond to the B-integrals of approximately 0.037, 0.25 and 0.85 rad, respectively.
Fig. 3. (a) Summary of pre-pulse peak contrast in the J-KAREN-P laser system with plane-parallel plates of approximately 1, 3, 5, 8 and 11.8 mm. The blue, red and black filled circles are obtained with the output energies of approximately 45, 1.8 and 26 J, respectively. These energies correspond to B-integrals of approximately 0.037, 0.25 and 0.85 rad, respectively. (b) Summary of the time delay versus the plane-parallel plate thickness.
Fig. 4. Representative measured artificial and real pre-pulses in the J-KAREN-P laser system by the Ti:sapphire pre-amplifier crystal.
Fig. 5. Typical contrast of the J-KAREN-P laser system (a) before and (b) after employing optical components with a small wedge angle.
Fig. 6. Typical contrast of the J-KAREN-P laser system with the Öffner stretcher convex mirror roughness of (a) 1–2 nm RMS (blue line) and (b) 0.2–0.3 nm RMS (red line).
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Hiromitsu Kiriyama, Yasuhiro Miyasaka, Akira Kon, Mamiko Nishiuchi, Akito Sagisaka, Hajime Sasao, Alexander S. Pirozhkov, Yuji Fukuda, Koichi Ogura, Kotaro Kondo, Nicholas P. Dover, Masaki Kando. Enhancement of pre-pulse and picosecond pedestal contrast of the petawatt J-KAREN-P laser[J]. High Power Laser Science and Engineering, 2021, 9(4): 04000e62
Special Issue: HIGH ENERGY DENSITY PHYSICS AND HIGH POWER LASERS
Received: Sep. 7, 2021
Accepted: Oct. 28, 2021
Posted: Nov. 2, 2021
Published Online: Nov. 23, 2021
The Author Email: Hiromitsu Kiriyama (kiriyama.hiromitsu@qst.go.jp)