Experiments on intense laser driven dielectrics have revealed population transfer to the conduction band to be oscillatory in time. This is in stark contrast to ionization in semiconductors and is currently unexplained. Current ionization theories neglect coupling between the valence and conduction band and therewith, the dynamic Stark shift. Our single-particle analysis identifies this as a potential reason for the different ionization behavior. The dynamic Stark shift increases the band gap with increasing laser intensities, thus suppressing ionization to an extent where virtual population oscillations become dominant. The dynamic Stark shift plays a role dominantly in dielectrics which, due to the larger band gap, can be exposed to signi...
International audiencethe behaviour of semiconductor materials and devices subjected to femtosecond ...
Nonlinear photoionization of dielectrics and semiconductors is widely treated in the framework of th...
When intense laser pulses interact with an atomic or solid target, high order harmonics of the funda...
Wide band gap dielectrics remain transparent for low intensity near-infrared light. However, when li...
The transient permittivity of dielectrics and semiconductors excited by a powerful ultrashort laser ...
The electron dynamics in dielectric materials induced by intense femtosecond laser pulses is theoret...
We demonstrated experimentally that the multiphoton ionization rate in gallium arsenide depends on t...
An ultrashort laser pulse is a burst of laser light lasting for time scales of a millionth of a bill...
When studying the interaction between a fast heavy ion projectile and a solid target, we can be inte...
International audienceLaser-induced electronic excitation, absorption and relaxation are the key iss...
International audienceNumerical modeling of electronic excitation processes induced by ultra-short l...
The electric field of a laser pulse exerts a force on charged particles which can be on the order of...
International audienceElectronic excitation-relaxation processes induced by ultra-short laser pulses...
In this chapter we review theoretical and experimental studies of the subject indicated in the title...
International audienceLaser-induced electronic excitation, absorption and relaxation are the key iss...
International audiencethe behaviour of semiconductor materials and devices subjected to femtosecond ...
Nonlinear photoionization of dielectrics and semiconductors is widely treated in the framework of th...
When intense laser pulses interact with an atomic or solid target, high order harmonics of the funda...
Wide band gap dielectrics remain transparent for low intensity near-infrared light. However, when li...
The transient permittivity of dielectrics and semiconductors excited by a powerful ultrashort laser ...
The electron dynamics in dielectric materials induced by intense femtosecond laser pulses is theoret...
We demonstrated experimentally that the multiphoton ionization rate in gallium arsenide depends on t...
An ultrashort laser pulse is a burst of laser light lasting for time scales of a millionth of a bill...
When studying the interaction between a fast heavy ion projectile and a solid target, we can be inte...
International audienceLaser-induced electronic excitation, absorption and relaxation are the key iss...
International audienceNumerical modeling of electronic excitation processes induced by ultra-short l...
The electric field of a laser pulse exerts a force on charged particles which can be on the order of...
International audienceElectronic excitation-relaxation processes induced by ultra-short laser pulses...
In this chapter we review theoretical and experimental studies of the subject indicated in the title...
International audienceLaser-induced electronic excitation, absorption and relaxation are the key iss...
International audiencethe behaviour of semiconductor materials and devices subjected to femtosecond ...
Nonlinear photoionization of dielectrics and semiconductors is widely treated in the framework of th...
When intense laser pulses interact with an atomic or solid target, high order harmonics of the funda...