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Quantum control of molecular rotation
The angular momentum of molecules, or, equivalently, their rotation in three-dimensional
space, is ideally suited for quantum control. Molecular angular momentum is naturally …
space, is ideally suited for quantum control. Molecular angular momentum is naturally …
[HTML][HTML] Matter manipulation with extreme terahertz light: Progress in the enabling THz technology
Terahertz (THz) light has proven to be a fine tool to probe and control quasi-particles and
collective excitations in solids, to drive phase transitions and associated changes in material …
collective excitations in solids, to drive phase transitions and associated changes in material …
Attoclock reveals natural coordinates of the laser-induced tunnelling current flow in atoms
In the research area of strong-laser-field interactions and attosecond science, tunnelling of
an electron through the barrier formed by the electric field of the laser and the atomic …
an electron through the barrier formed by the electric field of the laser and the atomic …
Manipulation of molecules with electromagnetic fields
The goal of the present article is to review the major developments that have led to the
current understanding of molecule–field interactions and experimental methods for …
current understanding of molecule–field interactions and experimental methods for …
Molecular orientation and alignment by intense single-cycle THz pulses
Intense single-cycle THz pulses resonantly interacting with molecular rotations are shown to
induce field-free orientation and alignment under ambient conditions. We calculate and …
induce field-free orientation and alignment under ambient conditions. We calculate and …
Attosecond science: recent highlights and future trends
We review the first ten years of attosecond science with a selection of recent highlights and
trends and give an outlook on future directions. After introducing the main spectroscopic …
trends and give an outlook on future directions. After introducing the main spectroscopic …
Time-resolved imaging of purely valence-electron dynamics during a chemical reaction
Chemical reactions are manifestations of the dynamics of molecular valence electrons and
their couplings to atomic motions. Emerging methods in attosecond science can probe …
their couplings to atomic motions. Emerging methods in attosecond science can probe …
Multiparticle cumulant map** for Coulomb explosion imaging
We extend covariance velocity map ion imaging to four particles, establishing cumulant
map** and allowing for measurements that provide insights usually associated with …
map** and allowing for measurements that provide insights usually associated with …
Tracing orbital images on ultrafast time scales
Frontier orbitals determine fundamental molecular properties such as chemical reactivities.
Although electron distributions of occupied orbitals can be imaged in momentum space by …
Although electron distributions of occupied orbitals can be imaged in momentum space by …
Theory of tunneling ionization of molecules: Weak-field asymptotics including dipole effects
The formulation of the parabolic adiabatic expansion approach to the problem of ionization
of atomic systems in a static electric field, originally developed for the axially symmetric case …
of atomic systems in a static electric field, originally developed for the axially symmetric case …