Temporal pulse shaping technique for nonlinear frequency shifting
durch
KBW.2.028 (GSI)
Gautier Parize1,2, Michele Natile1, Florent Guichard1, Antoine Comby1, Marc Hanna2, and Patrick Georges2
1. Amplitude, Cité de la Photonique, 11 Av. de Caneranne, 33600 Pessac, France
2. Université Paris-Saclay, Institut d’Optique Graduate School, CNRS, Laboratoire Charles Fabry, 2 Av. Augustin Fresnel, 91127 Palaiseau, France
We present a spectral phase-only shaping technique allowing to generate arbitrary temporal shapes and demonstrate its use for ultrafast ytterbium-based laser sources. This technique is based on the introduction of a nonlinear chirp that is determined solely by the input spectral intensity and the target temporal intensity, as shown in Fig 1.

Figure 1: Top - spectrum (black) and applied delay (dashed green) via spectral phase control. Bottom - Resulting temporal profile (green) and target temporal profile (black).
We describe its working principle and experimentally demonstrate the generation of triangle shaped pulses at the output of a laser source, which delivers 150 µJ, sub-200 fs pulses at 150 kHz. These pulses are then passed through a nonlinear multipass cell to observe wavelength shifting via self-phase modulation. A spectral tunability of 28 nm is achieved around the input central wavelength of 1034 nm.
Yannik Zobus