Kazansky AK, Kabachnik NM. Theoretical study of attosecond chronoscopy of strong-field atomic photoionization. Journal of Physics. B, Atomic, Molecular and Optical Physics. 2008;41(13): 135601.A model which describes the time evolution of strong-field photoionization of atoms is presented. Based on the numerical solution of the non-stationary Schrodinger equation, the model allows one to predict and to interpret the results of experiments on double photoionization of atoms by a combined action of a very short (attosecond) XUV pulse and a few-cycle IR pulse of a powerful laser at various delay times between the two pulses. Depending on the binding energy of the ionized electron, two types of processes are considered. If the electron is tight...
Understanding the interaction of matter with ultrashort attosecond light pulse provides fundamental ...
Understanding the interaction of matter with ultrashort attosecond light pulse provides fundamental ...
This tutorial presents an introduction to the interaction of light and matter on the attosecond time...
Kazansky AK, Kabachnik NM. An attosecond time-resolved study of strong-field atomic photoionization....
The time evolution of atomic photoionization by an intense few-cycle laser pulse is theoretically in...
Kazansky AK, Kabachnik NM, Sazhina IP. Quantum beats and fine structure in attosecond chronoscopy of...
A theoretical model is presented which describes the time evolution of strong-field photoionization ...
Kazansky AK, Kabachnik NM. Theoretical description of atomic photoionization by an attosecond XUV pu...
Kazansky AK, Kabachnik NM. Theoretical description of atomic photoionization by attosecond XUV pulse...
The main topic of this thesis is the time-resolved study of the dynamics occurring during the strong...
A new theoretical approach to the description of the attosecond streaking measurements of atomic pho...
The material presented in this chapter is based on important advances realized in "attophysics" whic...
Recent developments in laser technology, in particular the advances in high-harmonic generation, ena...
In this review, we will focus on the theoretical aspects in observing and controlling the electronic...
We present experimental results and a theoretical framework for understanding the ionization dynamic...
Understanding the interaction of matter with ultrashort attosecond light pulse provides fundamental ...
Understanding the interaction of matter with ultrashort attosecond light pulse provides fundamental ...
This tutorial presents an introduction to the interaction of light and matter on the attosecond time...
Kazansky AK, Kabachnik NM. An attosecond time-resolved study of strong-field atomic photoionization....
The time evolution of atomic photoionization by an intense few-cycle laser pulse is theoretically in...
Kazansky AK, Kabachnik NM, Sazhina IP. Quantum beats and fine structure in attosecond chronoscopy of...
A theoretical model is presented which describes the time evolution of strong-field photoionization ...
Kazansky AK, Kabachnik NM. Theoretical description of atomic photoionization by an attosecond XUV pu...
Kazansky AK, Kabachnik NM. Theoretical description of atomic photoionization by attosecond XUV pulse...
The main topic of this thesis is the time-resolved study of the dynamics occurring during the strong...
A new theoretical approach to the description of the attosecond streaking measurements of atomic pho...
The material presented in this chapter is based on important advances realized in "attophysics" whic...
Recent developments in laser technology, in particular the advances in high-harmonic generation, ena...
In this review, we will focus on the theoretical aspects in observing and controlling the electronic...
We present experimental results and a theoretical framework for understanding the ionization dynamic...
Understanding the interaction of matter with ultrashort attosecond light pulse provides fundamental ...
Understanding the interaction of matter with ultrashort attosecond light pulse provides fundamental ...
This tutorial presents an introduction to the interaction of light and matter on the attosecond time...