We study theoretically the single ionization of noble gas atoms by the combined action of an attosecond pulse train with linear polarization and an assistant laser field with circular polarization. We employ a non-perturbative model that under certain approximations gives closed-form expressions for the angular distributions of photoelectrons. Interestingly, our model allow us to interpret these angular distributions as two-centre interferences where the orientation and the modulus of the separation vector between the virtual emitters is governed by the assistant laser field. Additionally, we show that such a configuration of light fields is similar to the polarization control technique, where both the attosecond pulse train and the assista...
High harmonic generation in multi-color laser fields opens the opportunity of generating isolated at...
Tunnel ionization of noble gas atoms driven by a strong circularly polarized laser field in combinat...
Single ionization of He by two oppositely circularly polarized, time-delayed attosecond pulses is sh...
The single ionization of noble gas atoms by an attosecond pulse train assisted by an infrared laser ...
Basic reactions involving water molecules are essential to understand the interaction between radiat...
We show how laser control over both electronic and hole dynamics in aligned molecules can be used to...
We present calculations on the atomic delay in photoionzation obtained with different combinations o...
We report experiments where hydrogen molecules were dissociatively ionized by an attosecond pulse tr...
The Born approximation is applied to study the high-energy ionization that is driven by short, relat...
We theoretically investigate the atomic polarization effect on photoelectron angular distributions (...
When small quantum systems, atoms or molecules, absorb a high-energy photon, electrons are emitted w...
We report experiments where hydrogen molecules were dissociatively ionized by an attosecond pulse tr...
We implemented a new experimental scheme for the generation of single-shot extreme-UV continua that ...
[EN]Ultrafast laser pulses generated at the attosecond timescale represent a unique tool to explore ...
We present a study of the time delay in atomic photo-ionization by circularly polarized laser pulse....
High harmonic generation in multi-color laser fields opens the opportunity of generating isolated at...
Tunnel ionization of noble gas atoms driven by a strong circularly polarized laser field in combinat...
Single ionization of He by two oppositely circularly polarized, time-delayed attosecond pulses is sh...
The single ionization of noble gas atoms by an attosecond pulse train assisted by an infrared laser ...
Basic reactions involving water molecules are essential to understand the interaction between radiat...
We show how laser control over both electronic and hole dynamics in aligned molecules can be used to...
We present calculations on the atomic delay in photoionzation obtained with different combinations o...
We report experiments where hydrogen molecules were dissociatively ionized by an attosecond pulse tr...
The Born approximation is applied to study the high-energy ionization that is driven by short, relat...
We theoretically investigate the atomic polarization effect on photoelectron angular distributions (...
When small quantum systems, atoms or molecules, absorb a high-energy photon, electrons are emitted w...
We report experiments where hydrogen molecules were dissociatively ionized by an attosecond pulse tr...
We implemented a new experimental scheme for the generation of single-shot extreme-UV continua that ...
[EN]Ultrafast laser pulses generated at the attosecond timescale represent a unique tool to explore ...
We present a study of the time delay in atomic photo-ionization by circularly polarized laser pulse....
High harmonic generation in multi-color laser fields opens the opportunity of generating isolated at...
Tunnel ionization of noble gas atoms driven by a strong circularly polarized laser field in combinat...
Single ionization of He by two oppositely circularly polarized, time-delayed attosecond pulses is sh...