Quantum mechanical approach to probing the birth of attosecond pulses using a two-color field
arXiv:1102.1291 · doi:10.1088/0953-4075/44/9/095602
Abstract
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 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.
References in corpus (1)
Cited by in corpus (15)
- Symphony on Strong Field Approximation
- Two-Color Strong-Field Photoelectron Spectroscopy and the Phase of the Phase
- Two-photon finite-pulse model for resonant transitions in attosecond experiments
- Study of attosecond delays using perturbation diagrams and exterior complex scaling
- Optimisation of Quantum Trajectories Driven by Strong-field Waveforms
- Theoretical study of terahertz generation from atoms and aligned molecules driven by two-color laser fields
- Time-resolved high harmonic spectroscopy of dynamical symmetry breaking in bi-circular laser fields
- Even harmonic generation in isotropic media of dissociating homonuclear molecules
- Multiphoton interaction phase shifts in attosecond science
- Optimal control of high-harmonic generation by intense few-cycle pulses
- Suppression of individual peaks in two-colour high harmonic generation
- Attosecond dynamics of light-induced resonant hole transfer in high-order-harmonic generation
- Quantum tunnelling without a barrier
- Classical trajectories in polar-asymmetric laser fields: Synchronous THz and XUV emission
- Towards attosecond pulse synthesis from solids: spectral shaping, field autocorrelation, and two-color harmonic generation