We investigate the generation of even and odd harmonics using an intense laser and a weak second harmonic field. Our theoretical approach is based on solving the saddle-point equations within the strong field approximation. The phase of the even harmonic oscillation as a function of the delay between the fundamental and second harmonic field is calculated and its variation with energy is found to be in good agreement with recent experimental results. We also find that the relationship between this phase variation and the group delay of the attosecond pulses depends on the intensity and wavelength of the fundamental field as well as the ionization potential of the atom
Nonlinear processes of high-order harmonic generation (HHG) produced by ultrashort few-cycle laser p...
We investigate high-order harmonic emission and isolated attosecond pulse (IAP) generation in atoms ...
There is currently great interest in the high-order harmonics generation (HHG) due to its potentials...
Attosecond science refers to physical processes that occur on the natural timescale of electron moti...
In this paper, we theoretically investigate the delay time effect on the high-order harmonic generat...
Generation of high-order harmonics has emerged as a powerful technique for the generation of broadba...
Attosecond pulse trains are produced during the production of high harmonics when a gas sample is ir...
Attosecond pulses allow the study of electrons on their natural timescale. They are created from the...
International audienceIn principle, the temporal beating of superposed high harmonics obtained by fo...
Quantum wavepacket exploration of isolated high-order harmonic attosecond pulse generation: from two...
The physics of extreme ultraviolet attosecond pulse trains generated during the interaction between ...
The interaction of atoms with intense laser radiation leads to the generation of high-order harmonic...
We present a method of producing single attosecond pulses by using a few-cycle (5 fs) driving pulse ...
Based on the theory of strong field approximation, we simulate the high harmonic and attosecond puls...
We investigate high-order harmonic generations by controlling various quantum paths of harmonics in ...
Nonlinear processes of high-order harmonic generation (HHG) produced by ultrashort few-cycle laser p...
We investigate high-order harmonic emission and isolated attosecond pulse (IAP) generation in atoms ...
There is currently great interest in the high-order harmonics generation (HHG) due to its potentials...
Attosecond science refers to physical processes that occur on the natural timescale of electron moti...
In this paper, we theoretically investigate the delay time effect on the high-order harmonic generat...
Generation of high-order harmonics has emerged as a powerful technique for the generation of broadba...
Attosecond pulse trains are produced during the production of high harmonics when a gas sample is ir...
Attosecond pulses allow the study of electrons on their natural timescale. They are created from the...
International audienceIn principle, the temporal beating of superposed high harmonics obtained by fo...
Quantum wavepacket exploration of isolated high-order harmonic attosecond pulse generation: from two...
The physics of extreme ultraviolet attosecond pulse trains generated during the interaction between ...
The interaction of atoms with intense laser radiation leads to the generation of high-order harmonic...
We present a method of producing single attosecond pulses by using a few-cycle (5 fs) driving pulse ...
Based on the theory of strong field approximation, we simulate the high harmonic and attosecond puls...
We investigate high-order harmonic generations by controlling various quantum paths of harmonics in ...
Nonlinear processes of high-order harmonic generation (HHG) produced by ultrashort few-cycle laser p...
We investigate high-order harmonic emission and isolated attosecond pulse (IAP) generation in atoms ...
There is currently great interest in the high-order harmonics generation (HHG) due to its potentials...