Control of the field of few-cycle optical pulses has had an enormous impact on attosecond science. Subcycle pulses open the potential for non-adiabatic phase matching while concentrating the electric field so it can be used most efficiently. However, subcycle field transients have been difficult to generate. We exploit the perturbative response of a sub-100\u2005\ub5m thick monocrystalline quartz plate irradiated by an intense few-cycle 1.8\u2005\ub5m pulse, which creates a phase-controlled supercontinuum spectrum. Within the quartz, the pulse becomes space\u2013time coupled as it generates a parallel second harmonic. Vacuum propagation naturally leads to a subcycle electric-field transient whose envelope is sculpted by the carrier envelope...
The dynamic of electron densities in matter upon the interaction with an intense, few-cycle electric...
[[abstract]]I shall describe two effective approaches of producing multi-octave-spanning combs of fr...
We combine harmonics from solids and gases to generate isolated attosecond pulses with central frequ...
Control of the field of few-cycle optical pulses has had an enormous impact on attosecond science. S...
In a few-cycle laser pulse, the peak field strength depends on the carrier envelope phase. Concurren...
In a few-cycle laser pulse, the peak field strength depends on the carrier envelope phase. Concurren...
We combine harmonics from solids and gases to generate isolated attosecond pulses with central frequ...
International audienceReal-time observation of ultrafast dynamics in the microcosm is a fundamental ...
High harmonic generation driven by femtosecond lasers makes it possible to capture the fastest dynam...
Real-time observation of ultrafast dynamics in the microcosm is a fundamental approach for understan...
High harmonic generation driven by femtosecond lasers makes it possible to capture the fastest dynam...
We demonstrated that a synthesized laser field consisting of an intense long (45 fs, multi-optical-c...
<p><strong>Figure 6.</strong> The temporal envelopes of the attosecond pulses by synthesizing the ha...
<p><strong>Figure 9.</strong> The attosecond pulses from (a) 500th to 700th and (b) 700th to 900th a...
The process of high-order harmonic generation leads to the production of a train of attosecond-durat...
The dynamic of electron densities in matter upon the interaction with an intense, few-cycle electric...
[[abstract]]I shall describe two effective approaches of producing multi-octave-spanning combs of fr...
We combine harmonics from solids and gases to generate isolated attosecond pulses with central frequ...
Control of the field of few-cycle optical pulses has had an enormous impact on attosecond science. S...
In a few-cycle laser pulse, the peak field strength depends on the carrier envelope phase. Concurren...
In a few-cycle laser pulse, the peak field strength depends on the carrier envelope phase. Concurren...
We combine harmonics from solids and gases to generate isolated attosecond pulses with central frequ...
International audienceReal-time observation of ultrafast dynamics in the microcosm is a fundamental ...
High harmonic generation driven by femtosecond lasers makes it possible to capture the fastest dynam...
Real-time observation of ultrafast dynamics in the microcosm is a fundamental approach for understan...
High harmonic generation driven by femtosecond lasers makes it possible to capture the fastest dynam...
We demonstrated that a synthesized laser field consisting of an intense long (45 fs, multi-optical-c...
<p><strong>Figure 6.</strong> The temporal envelopes of the attosecond pulses by synthesizing the ha...
<p><strong>Figure 9.</strong> The attosecond pulses from (a) 500th to 700th and (b) 700th to 900th a...
The process of high-order harmonic generation leads to the production of a train of attosecond-durat...
The dynamic of electron densities in matter upon the interaction with an intense, few-cycle electric...
[[abstract]]I shall describe two effective approaches of producing multi-octave-spanning combs of fr...
We combine harmonics from solids and gases to generate isolated attosecond pulses with central frequ...