Light pulses of sub-100 as (1 as=10-18 s) duration, with photon energies in the extreme-ultraviolet (XUV) spectral domain, represent the shortest event in time ever made and controlled by human beings. Their first experimental observation in 2001 has opened the door to investigating the fundamental dynamics of the quantum world on the natural time scale for electrons in atoms, molecules and solids and marks the beginning of the scientific field now called attosecond science
Sources of attosecond-duration light pulses provide the fastest time resolutions available today for...
All aspects of attosecond technology rely on electron wavepackets formed by ionization and controlle...
Attosecond imaging with electron beams can access optical-field-driven electron dynamics in space an...
Light pulses of sub-100 as (1 as=10-18 s) duration, with photon energies in the extreme-ultraviolet ...
The generation of ultrashort pulses is a key to exploring the dynamic behaviour of matter on ever-sh...
Hentschel M, Kienberger R, Spielmann C, et al. Attosecond metrology. NATURE. 2001;414(6863):509-513....
Scientists have been developing sources of light with ever-shorter pulse durations, in order to stud...
Since 2001 and the first demonstrations of the feasibility of generating and measuring attosecond li...
One objective of attosecond science is to study electron dynamics in atoms and molecular systems on ...
Attosecond pulses allow the study of electrons on their natural timescale. They are created from the...
To give a classical physics perspective a few tens of attoseconds corresponds roughly to the time an...
Within this work, electron dynamics in atoms are experimentally and numerically investigated on thei...
Attosecond extreme ultraviolet light pulses have the potential to resolve the ultrafast electron dyn...
Attosecond extreme ultraviolet light pulses have the potential to resolve the ultrafast electron dyn...
The shortest time interval controlled by a human being is the duration of a light pulse as short as ...
Sources of attosecond-duration light pulses provide the fastest time resolutions available today for...
All aspects of attosecond technology rely on electron wavepackets formed by ionization and controlle...
Attosecond imaging with electron beams can access optical-field-driven electron dynamics in space an...
Light pulses of sub-100 as (1 as=10-18 s) duration, with photon energies in the extreme-ultraviolet ...
The generation of ultrashort pulses is a key to exploring the dynamic behaviour of matter on ever-sh...
Hentschel M, Kienberger R, Spielmann C, et al. Attosecond metrology. NATURE. 2001;414(6863):509-513....
Scientists have been developing sources of light with ever-shorter pulse durations, in order to stud...
Since 2001 and the first demonstrations of the feasibility of generating and measuring attosecond li...
One objective of attosecond science is to study electron dynamics in atoms and molecular systems on ...
Attosecond pulses allow the study of electrons on their natural timescale. They are created from the...
To give a classical physics perspective a few tens of attoseconds corresponds roughly to the time an...
Within this work, electron dynamics in atoms are experimentally and numerically investigated on thei...
Attosecond extreme ultraviolet light pulses have the potential to resolve the ultrafast electron dyn...
Attosecond extreme ultraviolet light pulses have the potential to resolve the ultrafast electron dyn...
The shortest time interval controlled by a human being is the duration of a light pulse as short as ...
Sources of attosecond-duration light pulses provide the fastest time resolutions available today for...
All aspects of attosecond technology rely on electron wavepackets formed by ionization and controlle...
Attosecond imaging with electron beams can access optical-field-driven electron dynamics in space an...