1-MHz operation of 1.7-cycle multiple plate compression at 35-W average output power
arXiv:2210.12976 · doi:10.1364/OL.477372
Abstract
We generated 1.7-cycle and 35-J pulses at a 1-MHz repetition rate by using two-stage multiple plate continuum compression of Yb-laser pulses with 80-W average input power. By adjusting the plate positions with careful consideration of the thermal lensing effect due to the high average power, we compressed the output pulse with a 184-fs initial duration to 5.7 fs by using only group-delay-dispersion compensation. This pulse achieved a sufficient beam quality ( < 1.5) reaching a focused intensity over 10 W/cm and a high spatial-spectral homogeneity (98%). Our study holds promise for a MHz-isolated-attosecond-pulse source for advanced attosecond spectroscopic and imaging technologies with unprecedentedly high signal-to-noise ratios.
4 pages, 6 figures
References in corpus (6)
- 10.4 kW coherently combined ultrafast fiber laser
- Energetic sub-2-cycle laser with 220 W average power
- 1 kW, 10 mJ, 120 fs coherently combined fiber CPA laser system
- Multipass cell for high-power few-cycle compression
- Few-cycle pulse generation by double-stage hybrid multi-pass multi-plate nonlinear pulse compression
- Spatially homogeneous few-cycle compression of Yb lasers via all-solid-state free-space soliton management