We present a theory illuminating the cross-over from strong-field tunnelling ionization to weak-field multiphoton ionization in the interaction of a classical laser field with a hydrogen atom. A simple formula is derived in which the ionization amplitude appears as a product of two separate amplitudes. The first describes the initial polarization of the atom by virtual multiphoton absorption and the second the subsequent tunnelling out of the polarized atom. Tunnelling directly from the ground state and multiphoton absorption without tunnelling appear naturally as the limits of the theory
This dissertation deals with two different subfields of atomic physics, thus it is divided into two ...
We present results of high resolution fully differential measurements on single ionization of He, Ne...
Following a historical introduction on the nature of light and its interaction with matter, a survey...
Using the recently proposed R-matrix-Floquet theory the authors have analysed the multiphoton ioniza...
Using the recently proposed R-matrix-Floquet theory we have analysed the multiphoton ionization of a...
We present calculations of ionization rates, angular distributions, and above-threshold-ionization s...
We outline a formalism and develop a computational procedure to treat the process of multiphoton ion...
We investigate the ionization process of an ${\rm{H}}$ atom with different wavelengths in a linearl...
Des atomes soumis à un rayonnement laser intense peuvent être ionisés en absorbant N photons par l'i...
We address the concept of direct multiphoton multiple ionization in atoms exposed to intense, short-...
During strong-field multiphoton ionization, a wave packet is formed each time the laser field passes...
It is well known that a neutral atom interacting with a strong laser field will ionize at sufficient...
A relativistic generalization of the semiclassical theory of tunneling and multiphoton ionization of...
Electron-momentum distributions for above-threshold ionization of argon in a few-cycle, linearly pol...
Part I: Recent calculations of ionization rate based on the numerical solution of the time-dependent...
This dissertation deals with two different subfields of atomic physics, thus it is divided into two ...
We present results of high resolution fully differential measurements on single ionization of He, Ne...
Following a historical introduction on the nature of light and its interaction with matter, a survey...
Using the recently proposed R-matrix-Floquet theory the authors have analysed the multiphoton ioniza...
Using the recently proposed R-matrix-Floquet theory we have analysed the multiphoton ionization of a...
We present calculations of ionization rates, angular distributions, and above-threshold-ionization s...
We outline a formalism and develop a computational procedure to treat the process of multiphoton ion...
We investigate the ionization process of an ${\rm{H}}$ atom with different wavelengths in a linearl...
Des atomes soumis à un rayonnement laser intense peuvent être ionisés en absorbant N photons par l'i...
We address the concept of direct multiphoton multiple ionization in atoms exposed to intense, short-...
During strong-field multiphoton ionization, a wave packet is formed each time the laser field passes...
It is well known that a neutral atom interacting with a strong laser field will ionize at sufficient...
A relativistic generalization of the semiclassical theory of tunneling and multiphoton ionization of...
Electron-momentum distributions for above-threshold ionization of argon in a few-cycle, linearly pol...
Part I: Recent calculations of ionization rate based on the numerical solution of the time-dependent...
This dissertation deals with two different subfields of atomic physics, thus it is divided into two ...
We present results of high resolution fully differential measurements on single ionization of He, Ne...
Following a historical introduction on the nature of light and its interaction with matter, a survey...