articleTop 1% cited
Compression of high-energy laser pulses below 5 fs
Optics Letters · 1997 · Vol. 22(8) · pp. 522–522
M. Nisoli✉(Politecnico di Milano)S. De Silvestri(Politecnico di Milano)O. Svelto(Politecnico di Milano)R. SzipöcsK. FerenczChristian Spielmann(TU Wien)S. Sartania(TU Wien)Ferenc Krausz(TU Wien)
Abstract
High-energy 20-fs pulses generated by a Ti:sapphire laser system were spectrally broadened to more than 250 nm by self-phase modulation in a hollow fiber filled with noble gases and subsequently compressed in a broadband high-throughput dispersive system. Pulses as short as 4.5 fs with energy up to 20-microJ were obtained with krypton, while pulses as short as 5 fs with energy up to 70 microJ were obtained with argon. These pulses are, to our knowledge, the shortest generated to date at multigigawatt peak powers.
Laser-Matter Interactions and ApplicationsLaser-Plasma Interactions and DiagnosticsLaser-induced spectroscopy and plasmaOpticsMaterials scienceKryptonSapphireLaserArgonPulse compressionSelf-phase modulationFiber laserEnergy (signal processing)
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References
Compression of optical pulses to six femtoseconds by using cubic phase compensation
Optics Letters · 1987 · 921 citations
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