We investigate multiphoton single ionization with intense femtosecond laser fields in aligned nitrogen molecules. We find that the temporal structure of the electron wave packet released into the continuum by tunnelling ionization is independent of alignment and thus independent of the spatial structure of the orbital it originated from. 1
By using a three-dimensional time-dependent Schrodinger equation, we calculate alignment-dependent i...
We present measurements of the laser induced spatial alignment of two diatomic molecules, iodine (I2...
In intense femtosecond laser fields, molecules could be tunnel ionized from multiple valence orbital...
We investigate the dynamics of double ionization in aligned nitrogen molecules. An ultrashort, weak ...
The dynamics of rotational wave packets of laser-aligned linear molecules were studied with femtosec...
We demonstrate a method to measure strong field laser ionization of aligned molecules. The method em...
Field-induced alignment of O-2 and N-2 was experimentally studied with laser intensities varying fro...
The ionization probability of N2, O2, and CO2 in intense laser fields is studied theoretically as a ...
By using a three-dimensional time-dependent Schr?dinger equation(TDSE),we calculate alignmentdepende...
The angular distributions of ionic fragments produced by multi-electron dissociative ionization of d...
It is shown that measurement of alignment-dependent ionization probability and high-order harmonic g...
We experimentally measure the ionization probability as a function of alignment angle of three molec...
We calculate photoelectron angular distributions (PADs) resulting from single-photon (43 eV) ionizat...
International audienceWe report an original optical method providing the probability of molecular io...
The interaction of strong laser fields with matter intrinsically provides powerful tools to image tr...
By using a three-dimensional time-dependent Schrodinger equation, we calculate alignment-dependent i...
We present measurements of the laser induced spatial alignment of two diatomic molecules, iodine (I2...
In intense femtosecond laser fields, molecules could be tunnel ionized from multiple valence orbital...
We investigate the dynamics of double ionization in aligned nitrogen molecules. An ultrashort, weak ...
The dynamics of rotational wave packets of laser-aligned linear molecules were studied with femtosec...
We demonstrate a method to measure strong field laser ionization of aligned molecules. The method em...
Field-induced alignment of O-2 and N-2 was experimentally studied with laser intensities varying fro...
The ionization probability of N2, O2, and CO2 in intense laser fields is studied theoretically as a ...
By using a three-dimensional time-dependent Schr?dinger equation(TDSE),we calculate alignmentdepende...
The angular distributions of ionic fragments produced by multi-electron dissociative ionization of d...
It is shown that measurement of alignment-dependent ionization probability and high-order harmonic g...
We experimentally measure the ionization probability as a function of alignment angle of three molec...
We calculate photoelectron angular distributions (PADs) resulting from single-photon (43 eV) ionizat...
International audienceWe report an original optical method providing the probability of molecular io...
The interaction of strong laser fields with matter intrinsically provides powerful tools to image tr...
By using a three-dimensional time-dependent Schrodinger equation, we calculate alignment-dependent i...
We present measurements of the laser induced spatial alignment of two diatomic molecules, iodine (I2...
In intense femtosecond laser fields, molecules could be tunnel ionized from multiple valence orbital...