The concept of temporal superresolution is applied to optical few-cycle laser pulses for the first time to our knowledge. Pulse durations of as little as to 3.7 fs, well below the Fourier limit, are achieved by pulse shaping of an octave-spanning Ti:sapphire oscillator spectrum. Our prism-based pulse shaper also enables us to generate a manifold of well-controlled pulse sequences that are important for coherent control applications on a femtosecond time scale
We demonstrate a prism-based pulse shaping setup that enables the shaping of ultrashort pulses with ...
We report programmable shaping of femtosecond optical pulses by use of a multielement liquid-crystal...
We demonstrate a prism-based pulse shaping setup that enables the shaping of ultrashort pulses with ...
The concept of temporal superresolution is applied to optical few-cycle laser pulses for the first t...
The concept of temporal superresolution is applied to optical few-cycle laser pulses for the first t...
The Fourier-transform limit achieved by a linear spectral phase is the typical optimum by the genera...
The Fourier-transform limit achieved by a linear spectral phase is the typical optimum by the genera...
The synthesis of nearly arbitrary supercontinuum pulse forms is demonstrated with sub-pulse structur...
International audienceWe introduce the notion of temporal superresolution for ultrashort laser pulse...
International audienceWe introduce the notion of temporal superresolution for ultrashort laser pulse...
International audienceWe introduce the notion of temporal superresolution for ultrashort laser pulse...
International audienceWe introduce the notion of temporal superresolution for ultrashort laser pulse...
International audienceWe introduce the notion of temporal superresolution for ultrashort laser pulse...
Shaping of femtosecond light pulses is typically performed in the frequency domain, by manipulation ...
We demonstrate a prism-based pulse shaping setup that enables the shaping of ultrashort pulses with ...
We demonstrate a prism-based pulse shaping setup that enables the shaping of ultrashort pulses with ...
We report programmable shaping of femtosecond optical pulses by use of a multielement liquid-crystal...
We demonstrate a prism-based pulse shaping setup that enables the shaping of ultrashort pulses with ...
The concept of temporal superresolution is applied to optical few-cycle laser pulses for the first t...
The concept of temporal superresolution is applied to optical few-cycle laser pulses for the first t...
The Fourier-transform limit achieved by a linear spectral phase is the typical optimum by the genera...
The Fourier-transform limit achieved by a linear spectral phase is the typical optimum by the genera...
The synthesis of nearly arbitrary supercontinuum pulse forms is demonstrated with sub-pulse structur...
International audienceWe introduce the notion of temporal superresolution for ultrashort laser pulse...
International audienceWe introduce the notion of temporal superresolution for ultrashort laser pulse...
International audienceWe introduce the notion of temporal superresolution for ultrashort laser pulse...
International audienceWe introduce the notion of temporal superresolution for ultrashort laser pulse...
International audienceWe introduce the notion of temporal superresolution for ultrashort laser pulse...
Shaping of femtosecond light pulses is typically performed in the frequency domain, by manipulation ...
We demonstrate a prism-based pulse shaping setup that enables the shaping of ultrashort pulses with ...
We demonstrate a prism-based pulse shaping setup that enables the shaping of ultrashort pulses with ...
We report programmable shaping of femtosecond optical pulses by use of a multielement liquid-crystal...
We demonstrate a prism-based pulse shaping setup that enables the shaping of ultrashort pulses with ...