info:eu-repo/semantics/article
Classical-quantum correspondence in atomic ionization by midinfrared pulses: Multiple peak and interference structures
Fecha
2013-01Registro en:
Lemell, Christoph; Burgdörfer, Joachim; Gräfe, Stefanie; Dimitriou, Konstantinos I.; Arbo, Diego; et al.; Classical-quantum correspondence in atomic ionization by midinfrared pulses: Multiple peak and interference structures; American Physical Society; Physical Review A: Atomic, Molecular And Optical Physics; 87; 1; 1-2013; 13421. 1-9
1050-2947
Autor
Lemell, Christoph
Burgdörfer, Joachim
Gräfe, Stefanie
Dimitriou, Konstantinos I.
Arbo, Diego
Tong, Xiao-Min
Resumen
Atomic ionization by strong and ultrashort laser pulses with frequencies in the midinfrared spectral region have revealed novel features such as the low-energy structures. We have performed fully three-dimensional quantum dynamical as well as classical trajectory Monte Carlo simulations for pulses with wavelengths from λ = 2000 to 6000 nm. Furthermore, we apply distorted-wave quantum approximations. This allows to explore the quantum-classical correspondence as well as the (non) perturbative character of the ionization dynamics driven by long-wavelength pulses. We observe surprisingly rich structures in the differential energy and angular momentum distribution which sensitively depend on λ , the pulse duration τ p , and the carrier-envelope phase ϕ CEP