Chirped pulse amplification of shaped laser pulses-minimization of distortion caused by self-phase modulation in amplifiers
M. Everett, Brent C. Stuart, M. D. Perry
Abstract
M. Everett, Brent C. Stuart, M. D. Perry
Abstract
Summary form only given. Many laser plasma interaction experiments with ultrashort laser pulses either require or can significantly benefit from the use of a laser pulse with a temporal profile, which has been optimized for the experiment. We will first demonstrate experimentally that self-phase modulation is a serious issue for amplification of shaped pulses in chirped pulse amplification (CPA) systems by showing greatly increased distortion during amplification of a pulse shaped for the fast ignitor experiment compared to the distortion during amplification of a transform-limited pulse. This distortion will be measured as a function of B-integral in the stretched pulse via spectral interferometry and FROG techniques. We then demonstrate a phase-only pulse shaping technique, which produces a stretched pulse free of rapid temporal variations and thus minimizes these distortions.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Summary form only given. Many laser plasma interaction experiments with ultrashort laser pulses either require or can significantly benefit from the use of a laser pulse with a temporal profile, which has been optimized for the experiment. We will first demonstrate experimentally that self-phase modulation is a serious issue for amplification of shaped pulses in chirped pulse amplification (CPA) systems by showing greatly increased distortion during amplification of a pulse shaped for the fast ignitor experiment compared to the distortion during amplification of a transform-limited pulse. This distortion will be measured as a function of B-integral in the stretched pulse via spectral interferometry and FROG techniques. We then demonstrate a phase-only pulse shaping technique, which produces a stretched pulse free of rapid temporal variations and thus minimizes these distortions.
Key concepts: Chirped pulse amplification, Femtosecond pulse shaping, Bandwidth-limited pulse, Optics, Multiphoton intrapulse interference phase scan, Ultrashort pulse, Pulse (music), Laser