We have studied population trapping in a one-dimensional model atom interacting with a short-pulse highintensity laser, using Floquet analysis and direct numerical integration of the time-dependent Schrodinger ¨ equation for a range of peak pulse intensities. We find that photoelectrons are efficiently produced only by pulses whose peak intensities lie in a narrow range around the resonant intensity for a given intermediate state. Excited-state populations, however, are generated with comparable efficiencies for all pulses whose peak intensities exceed the resonant intensity. This implies that, for a realistic laser pulse with an inhomogeneous spatial distribution of intensity, excited atoms are generated throughout a larger volume than are...
We address the concept of direct multiphoton multiple ionization in atoms exposed to intense, short-...
The advent of ultrafast laser science offers the unique opportunity to combine Floquet engineering w...
The advent of ultrafast laser science offers the unique opportunity to combine Floquet engineering w...
We have studied population trapping in a one-dimensional model atom interacting with a short-pulse h...
The ionization of one-electron model atoms interacting with an intense few-cycle laser pulse is calc...
In this thesis we are concerned with the interaction of an atom with an intense laser field. By nume...
We present an analytic model for the description of above-threshold ionization (ATI) of an atom by a...
We present an analytic model for the description of above-threshold ionization (ATI) of an atom by a...
We investigate radiation trapping in an atomic vapor which has been excited by a strong short laser ...
High intensities in laser-matter interaction drive nonlinear processes. Whereas at low frequencies t...
High intensities in laser-matter interaction drive nonlinear processes. Whereas at low frequencies t...
This work describes the first observations of the ionisation of neon in a metastable atomic state ut...
We discuss the mechanism of harmonic generation for a one-dimensional model atom with several bound ...
Following a historical introduction on the nature of light and its interaction with matter, a survey...
We address the concept of direct multiphoton multiple ionization in atoms exposed to intense, short-...
We address the concept of direct multiphoton multiple ionization in atoms exposed to intense, short-...
The advent of ultrafast laser science offers the unique opportunity to combine Floquet engineering w...
The advent of ultrafast laser science offers the unique opportunity to combine Floquet engineering w...
We have studied population trapping in a one-dimensional model atom interacting with a short-pulse h...
The ionization of one-electron model atoms interacting with an intense few-cycle laser pulse is calc...
In this thesis we are concerned with the interaction of an atom with an intense laser field. By nume...
We present an analytic model for the description of above-threshold ionization (ATI) of an atom by a...
We present an analytic model for the description of above-threshold ionization (ATI) of an atom by a...
We investigate radiation trapping in an atomic vapor which has been excited by a strong short laser ...
High intensities in laser-matter interaction drive nonlinear processes. Whereas at low frequencies t...
High intensities in laser-matter interaction drive nonlinear processes. Whereas at low frequencies t...
This work describes the first observations of the ionisation of neon in a metastable atomic state ut...
We discuss the mechanism of harmonic generation for a one-dimensional model atom with several bound ...
Following a historical introduction on the nature of light and its interaction with matter, a survey...
We address the concept of direct multiphoton multiple ionization in atoms exposed to intense, short-...
We address the concept of direct multiphoton multiple ionization in atoms exposed to intense, short-...
The advent of ultrafast laser science offers the unique opportunity to combine Floquet engineering w...
The advent of ultrafast laser science offers the unique opportunity to combine Floquet engineering w...