Coherent subterahertz radiation from femtosecond infrared filaments in air
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Publisher
Optica Publishing Group
Reference16 articles.
1. Self-channeling of high-peak-power femtosecond laser pulses in air
2. Conical emission from self-guided femtosecond pulses in air
3. Moving focus in the propagation of ultrashort laser pulses in air
4. Femtosecond laser-guided electric discharge in air
5. Triggering and guiding megavolt discharges by use of laser-induced ionized filaments
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