Multiphoton intrapulse interference IV Ultrashort laser pulse spectral phase characterization and compensation
Vadim V. Lozovoy, Igor Pastirk, Marcos Dantus
Abstract
Vadim V. Lozovoy, Igor Pastirk, Marcos Dantus
Abstract
We introduce a noninterferometric single beam method to characterize and compensate the spectral phase of ultrashort femtosecond pulses accurately. The method uses a pulse shaper that scans calibrated phase functions to determine the unknown spectral phase of a pulse. The pulse shaper can then be used to synthesize arbitrary phase femtosecond pulses or it can introduce a compensating spectral phase to obtain transform-limited pulses. This method is ideally suited for the generation of tailored spectral phase functions required for coherent control experiments.
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We introduce a noninterferometric single beam method to characterize and compensate the spectral phase of ultrashort femtosecond pulses accurately. The method uses a pulse shaper that scans calibrated phase functions to determine the unknown spectral phase of a pulse. The pulse shaper can then be used to synthesize arbitrary phase femtosecond pulses or it can introduce a compensating spectral phase to obtain transform-limited pulses. This method is ideally suited for the generation of tailored spectral phase functions required for coherent control experiments.
Key concepts: Optics, Femtosecond pulse shaping, Multiphoton intrapulse interference phase scan, Femtosecond, Ultrashort pulse, Pulse shaping, Bandwidth-limited pulse, Phase (matter)