Short pulse laser train for laser plasma interaction experiments
Abstract
A multiframe, high-time resolution pump-probe diagnostic consisting of a consecutive train of ultrashort laser pulses (∼ps) has been developed for use with a chirped pulse amplification (CPA) system. A system of high quality windows is used to create a series of 1054nm picosecond-laser pulses which are injected into the CPA system before the pulse stretcher and amplifiers. By adding or removing windows in the pulse train forming optics, the number of pulses can be varied. By varying the distance and thickness of the respective optical elements, the time in between the pulses, i.e., the time in between frames, can be set. In our example application, the CPA pulse train is converted to 527nm using a KDP crystal and focused into a preformed plasma and the reflected laser light due to stimulated Raman scattering is measured. Each pulse samples different plasma conditions as the plasma evolves in time, producing more data on each laser shot than with a single short pulse probe. This novel technique could potentially be implemented to obtain multiple high-time resolution measurements of the dynamics of physical processes over hundreds of picoseconds or even nanoseconds with picosecond resolution on a single shot.
- Publication:
-
Review of Scientific Instruments
- Pub Date:
- August 2007
- DOI:
- 10.1063/1.2760687
- Bibcode:
- 2007RScI...78h3501K
- Keywords:
-
- 52.50.Jm;
- 42.60.Fc;
- 52.70.Kz;
- 42.70.Mp;
- 52.38.Bv;
- Plasma production and heating by laser beams;
- Modulation tuning and mode locking;
- Optical measurements;
- Nonlinear optical crystals;
- Rayleigh scattering;
- stimulated Brillouin and Raman scattering