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Self-channeling of a multi-Joule 10 µm picosecond pulse train through long distances in air.

作者信息

Tochitsky S Ya, Welch E C, Matteo D A, Panagiotopoulos P, Kolesik M, Moloney J V, Joshi C

出版信息

Opt Express. 2024 Jan 15;32(2):2067-2080. doi: 10.1364/OE.512074.

DOI:10.1364/OE.512074
PMID:38297744
Abstract

In the long-wave infrared (LWIR) range, where, due to wavelength scaling, the critical power of Kerr self-focusing P in air increases to 300-400 GW, we demonstrate that without external focusing a train of picosecond CO laser pulses can propagate in the form of a single several-centimeter diameter channel over hundreds of meters. The train of 10 µm pulses, for which the total energy ≥20 J is distributed over several near-terawatt picosecond pulses with a maximum power ≤2P, is generated naturally during short pulse amplification in a CO laser. It is observed that the high-power 10 µm beam forms a large diameter "hot gas" channel in the ambient air with a ≥ 50 ms lifetime. Simulations of the experiment show that such filamentation-free self-channeling regime has low propagation losses and can deliver multi-Joule/TW-power LWIR pulses over km-scale distances.

摘要

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