When a strong laser field ionizes atoms (or molecules), the electron wave packet that tunnels from the molecule moves under the influence of the strong field and can re-collide with its parent ion. The maximum re-collision electron kinetic energy depends on the laser wavelength. Timed by the laser field oscillations, the re-colliding electron interferes with the bound state wave function from which it tunneled. The oscillating dipole caused by the quantum interference produces attosecond optical pulses. Interference can characterize both interfering beams-their wavelength, phase and spatial structure. Thus, written on the attosecond pulse is an image of the bound state orbital and the wave function at the re-collision electron. In addition ...
The collision of an electron against a repulsive potential in the presence of a laser field is inves...
Controlling attosecond electron wavepackets and soft x-ray pulses represents a formidable challenge ...
It is shown that the above-threshold electron de Broglie waves, generated by an intense laser pulse ...
Attosecond technology is a radical departure from all the optical (and collision) technology that pr...
All aspects of attosecond technology rely on electron wavepackets formed by ionization and controlle...
We demonstrate that an electron wave packet produced during intense field ionization can be used for...
Abstract: We will review recent experimental progress in the generation and characterization of atto...
Probing and controlling electrons and nuclei in matter at the attosecond timescale became possible w...
A universal interference structure is found in the photoelectron momentum distribution of atoms in i...
An intense light pulse can extract an electron wave packet from an atom near a field crest. This wav...
Attosecond pulses allow the study of electrons on their natural timescale. They are created from the...
Attosecond pulses are opening a wide new field on the border of chemistry and physics. They offer th...
An atom or molecule interacting with an intense, ultrafast laser pulse is a fundamental problem in m...
In this presentation you will learn how attosecond pulses are produced and measured. Using N2, O2 an...
The collision of an electron against a repulsive potential in the presence of a laser field is inves...
The collision of an electron against a repulsive potential in the presence of a laser field is inves...
Controlling attosecond electron wavepackets and soft x-ray pulses represents a formidable challenge ...
It is shown that the above-threshold electron de Broglie waves, generated by an intense laser pulse ...
Attosecond technology is a radical departure from all the optical (and collision) technology that pr...
All aspects of attosecond technology rely on electron wavepackets formed by ionization and controlle...
We demonstrate that an electron wave packet produced during intense field ionization can be used for...
Abstract: We will review recent experimental progress in the generation and characterization of atto...
Probing and controlling electrons and nuclei in matter at the attosecond timescale became possible w...
A universal interference structure is found in the photoelectron momentum distribution of atoms in i...
An intense light pulse can extract an electron wave packet from an atom near a field crest. This wav...
Attosecond pulses allow the study of electrons on their natural timescale. They are created from the...
Attosecond pulses are opening a wide new field on the border of chemistry and physics. They offer th...
An atom or molecule interacting with an intense, ultrafast laser pulse is a fundamental problem in m...
In this presentation you will learn how attosecond pulses are produced and measured. Using N2, O2 an...
The collision of an electron against a repulsive potential in the presence of a laser field is inves...
The collision of an electron against a repulsive potential in the presence of a laser field is inves...
Controlling attosecond electron wavepackets and soft x-ray pulses represents a formidable challenge ...
It is shown that the above-threshold electron de Broglie waves, generated by an intense laser pulse ...