Non-sequential double ionization (NSDI) of helium in an intense few-cycle laser pulse is investigated by applying the three-dimensional semi-classical rescattering method. It is found that the momentum distribution of He(2+) shows a single-double-single peak structure as the pulse intensity increases. According to the different mechanisms dominating the NSDI process, the laser intensity can be classified into three regimes where the momentum distribution of He(2+) exhibits different characteristics. In the relatively high intensity regime, an NSDI mechanism named the 'laser-assisted collision ionization' is found to be dominating the NSDI process and causing the single-peak structure. This result can shed light on the study of non...
With the ultrashort laser pulses available today, intensities which exceed the binding electrical fi...
Using a three-dimensional semiclassical method, we perform a systematic analysis of the effects of a...
As an electron is freed from an atom by an intense laser it is accelerated by the oscillating field....
We investigate nonsequential double ionization (NSDI) of helium by using an additional magnetic fiel...
We study nonsequential double ionization (NSDI) processes of an atom by applying the frequency-domai...
We present calculations on the ratio between double and single ionization of helium by a strong lase...
Citation: Chen, Z., Li, X., Zatsarinny, O., Bartschat, K., & Lin, C. D. (2018). Ratios of double to...
In this paper, we have investigated the correlated electron emission of the nonsequence double ioniz...
Faisal F, Becker A. Nonsequential double ionization: Mechanism and model formula. LASER PHYSICS. 199...
doi:10.1088/1367-2630/10/2/025020 Abstract. We apply and analyze the concept of mapping ionization t...
Becker A, Faisal F. Interplay of electron correlation and intense field dynamics in the double ioniz...
We study the effect of laser-induced double-ionization of a helium gas (with inhomogeneous density p...
Ionization of a helium atom by electron impact in the presence of laser radiation is studied theoret...
The ion momentum spectra for nonsequential double ionization of rare gases (He, Ne and Ar) in 23 fs ...
Laser-induced electron recollisions are fundamental to many strong field phenomena in atoms and mole...
With the ultrashort laser pulses available today, intensities which exceed the binding electrical fi...
Using a three-dimensional semiclassical method, we perform a systematic analysis of the effects of a...
As an electron is freed from an atom by an intense laser it is accelerated by the oscillating field....
We investigate nonsequential double ionization (NSDI) of helium by using an additional magnetic fiel...
We study nonsequential double ionization (NSDI) processes of an atom by applying the frequency-domai...
We present calculations on the ratio between double and single ionization of helium by a strong lase...
Citation: Chen, Z., Li, X., Zatsarinny, O., Bartschat, K., & Lin, C. D. (2018). Ratios of double to...
In this paper, we have investigated the correlated electron emission of the nonsequence double ioniz...
Faisal F, Becker A. Nonsequential double ionization: Mechanism and model formula. LASER PHYSICS. 199...
doi:10.1088/1367-2630/10/2/025020 Abstract. We apply and analyze the concept of mapping ionization t...
Becker A, Faisal F. Interplay of electron correlation and intense field dynamics in the double ioniz...
We study the effect of laser-induced double-ionization of a helium gas (with inhomogeneous density p...
Ionization of a helium atom by electron impact in the presence of laser radiation is studied theoret...
The ion momentum spectra for nonsequential double ionization of rare gases (He, Ne and Ar) in 23 fs ...
Laser-induced electron recollisions are fundamental to many strong field phenomena in atoms and mole...
With the ultrashort laser pulses available today, intensities which exceed the binding electrical fi...
Using a three-dimensional semiclassical method, we perform a systematic analysis of the effects of a...
As an electron is freed from an atom by an intense laser it is accelerated by the oscillating field....