It is shown that the above-threshold electron de Broglie waves, generated by an intense laser pulse at a metal surface are interfering to yield attosecond electron pulses. This interference of the de Broglie waves is an analog on of the superposition of high harmonics generated from rare gas atoms, resulting in trains of attosecond light pulses. Our model is based on the Floquet analysis of the inelastic electron scattering on the oscillating double-layer potential, generated by the incoming laser field of long duration at the metal surface. Owing to the inherent kinematic dispersion, the propagation of attosecond de Broglie waves in vacuum is very different from that of attosecond light pulses, which propagate without changing shape. The c...
The response of solids to electromagnetic fields is of crucial importance in many areas of science a...
The response of solids to electromagnetic fields is of crucial importance in many areas of science a...
Recently two emerging areas of research, attosecond and nanoscale physics, have started to come toge...
Attosecond pulses allow the study of electrons on their natural timescale. They are created from the...
One objective of attosecond science is to study electron dynamics in atoms and molecular systems on ...
Recent advances in the generation and control of attosecond light pulses have opened up new opportun...
The physics of extreme ultraviolet attosecond pulse trains generated during the interaction between ...
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...
We describe theoretically the generation of ultrashort (subfemtosecond) pulses using high-order harm...
We describe theoretically the generation of ultrashort (subfemtosecond) pulses using high-order harm...
When a low-frequency laser pulse is focused to a high intensity in a gas, the electric field of the ...
Recently two emerging areas of research, attosecond and nanoscale physics, have started to come toge...
Recently two emerging areas of research, attosecond and nanoscale physics, have started to come toge...
Attosecond spectroscopy1–7 can resolve electronic processes directly in time, but a movie-like space...
The response of solids to electromagnetic fields is of crucial importance in many areas of science a...
The response of solids to electromagnetic fields is of crucial importance in many areas of science a...
Recently two emerging areas of research, attosecond and nanoscale physics, have started to come toge...
Attosecond pulses allow the study of electrons on their natural timescale. They are created from the...
One objective of attosecond science is to study electron dynamics in atoms and molecular systems on ...
Recent advances in the generation and control of attosecond light pulses have opened up new opportun...
The physics of extreme ultraviolet attosecond pulse trains generated during the interaction between ...
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...
We describe theoretically the generation of ultrashort (subfemtosecond) pulses using high-order harm...
We describe theoretically the generation of ultrashort (subfemtosecond) pulses using high-order harm...
When a low-frequency laser pulse is focused to a high intensity in a gas, the electric field of the ...
Recently two emerging areas of research, attosecond and nanoscale physics, have started to come toge...
Recently two emerging areas of research, attosecond and nanoscale physics, have started to come toge...
Attosecond spectroscopy1–7 can resolve electronic processes directly in time, but a movie-like space...
The response of solids to electromagnetic fields is of crucial importance in many areas of science a...
The response of solids to electromagnetic fields is of crucial importance in many areas of science a...
Recently two emerging areas of research, attosecond and nanoscale physics, have started to come toge...