Visualization of high-order dispersion for compression of few-cycle pulses

We present a visually intuitive method for higher-order dispersion compensation based on multi-photon interpulse interference pulse scans. The dispersion values obtained from these scans are fed back as a correction to an acousto-optical programmable dispersive filter to compensate residual higher-o...

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Veröffentlicht in:Applied physics. B, Lasers and optics Lasers and optics, 2014, Vol.116 (3), p.549-560
Hauptverfasser: Zheng, Jiaan, Kobayashi, Wataru, Hamann, Thomas, Nürenberg, Daniel, Lührmann, Markus, L’huillier, Johannes A., Wallenstein, Richard, Zacharias, Helmut
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Sprache:eng
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Zusammenfassung:We present a visually intuitive method for higher-order dispersion compensation based on multi-photon interpulse interference pulse scans. The dispersion values obtained from these scans are fed back as a correction to an acousto-optical programmable dispersive filter to compensate residual higher-order dispersions up to fifth order. This method is applied to the dispersion management of a non-collinear optical parametric chirped-pulse amplifier. A grism-pair stretcher is designed based on a global dispersion balance which provides a large stretching factor and supports a spectral bandwidth of up to 320 nm. It is implemented in a two-stage three-pass non-collinear optical parametric chirped-pulse amplifier and stretches 6-fs seed pulses to about 80 ps from 700 to 1,000 nm. The amplified pulses are compressed by material dispersion. Pulses of less than 10-fs duration with a pulse energy of 125 μJ are obtained at 20-kHz repetition rate.
ISSN:0946-2171
1432-0649
DOI:10.1007/s00340-013-5732-7