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Spectral broadening and compression of picosecond pulses in air using a multi-pass cell.
- Zaldivar Escola, F;
- Savichev, V;
- Takil, T;
- Davenport, A;
- Zahedpour Anaraki, S;
- Ingegneri, N;
- Menoni, CS;
- Barty, CPJ;
- Rocca, JJ
Published Web Location
https://doi.org/10.1364/oe.599022Abstract
We report the spectral broadening and post-compression of picosecond pulses using a multi-pass cell (MPC) operating in air. A 2 m-long bi-concave cavity with 41 reflections and 96.4% transmission was designed and implemented, optimized for the compression of 5.5 ps, 4.5 mJ pulses from a Yb:YAG laser operating at 1030 nm. A 19.3-fold spectral broadening was obtained, increasing the bandwidth from 0.3 nm to 5.8 nm, which enabled pulse compression down to 547 fs with a symmetric temporal profile close to the transform limit. These results demonstrate the feasibility of using open-air MPCs for high-energy picosecond pulse post-compression, without the need for sealed chambers, while preserving high mode quality and transmission. Scaling to pulse higher energy is discussed.
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