Compartir
Título
Simultaneous compression, characterization and phase stabilization of GW-level 14 cycle VIS-NIR femtosecond pulses using a single dispersion-scan setup.
Autor(es)
Palabras clave
Attosecond pulses
Femtosecond pulses
High power lasers
Laser amplifiers
Optical elements
Phase matching
Fecha de publicación
2014-04
Editor
Optical Society of America
Citación
Francisco Silva, Miguel Miranda, Benjamín Alonso, Jens Rauschenberger, Vladimir Pervak, and Helder Crespo, "Simultaneous compression, characterization and phase stabilization of GW-level 1.4 cycle VIS-NIR femtosecond pulses using a single dispersion-scan setup," Opt. Express 22, 10181-10191 (2014)
Resumen
[EN]We have temporally characterized, dispersion compensated and carrier-envelope phase stabilized 1.4-cycle pulses (3.2 fs) with 160 µJ of energy at 722 nm using a minimal and convenient dispersion-scan setup. The setup is all inline, does not require interferometric beamsplitting, and uses components available in most laser laboratories. Broadband minimization of third-order dispersion using propagation in water enabled reducing the compressed pulse duration from 3.8 to 3.2 fs with the same set of chirped mirrors. Carrier-envelope phase stabilization of the octave-spanning pulses was also performed by the dispersion-scan setup. This unprecedentedly simple and reliable approach provides reproducible CEP-stabilized pulses in the single-cycle regime for applications such as CEP-sensitive spectroscopy and isolated attosecond pulse generation.
URI
DOI
10.1364/OE.22.010181
Versión del editor
Aparece en las colecciones
- ALF. Artículos [337]
Fichier(s) constituant ce document
Tamaño:
3.143Mo
Formato:
Adobe PDF
Descripción:
Artículo principal












