Presentation
8 June 2023 Sub-TW laser pulses via post-compression of 9 mJ, 1.2 picosecond laser pulses to 13 fs (Conference Presentation)
Nikita Khodakovskiy, Supriya Rajhans, Esmerando Escoto, Praveen K. Velpula, Bonaventura Farace, Rob Shalloo, Kristjan Poder, Jens Osterhoff, Wim P. Leemans, Ingmar Hartl, Christoph M. Heyl
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Abstract
In this work we report experimental compression of 9.4 mJ, 9.4 W, and 1.2 picosecond long pulses down to 7 mJ ,13 fs at 1 kHz in two cascaded stages with gas filled multi-pass cells (MPCs). The output from the first, argon filled MPC is compressed to <50 fs. The output pulses of the subsequent second MPC stage filled with Neon is then compressed to 13 fs using a chirped mirror compressor. The overall transmission, and compression ratio of both stages exceed 74 % and 92 times respectively.
Conference Presentation
© (2023) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Nikita Khodakovskiy, Supriya Rajhans, Esmerando Escoto, Praveen K. Velpula, Bonaventura Farace, Rob Shalloo, Kristjan Poder, Jens Osterhoff, Wim P. Leemans, Ingmar Hartl, and Christoph M. Heyl "Sub-TW laser pulses via post-compression of 9 mJ, 1.2 picosecond laser pulses to 13 fs (Conference Presentation)", Proc. SPIE PC12577, High-power, High-energy Lasers and Ultrafast Optical Technologies, PC125770F (8 June 2023); https://doi.org/10.1117/12.2669587
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KEYWORDS
Ultrafast phenomena

Picosecond phenomena

Pulse signals

Laser applications

Laser systems engineering

Materials science

Medicine

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