SUMMARY We study the interaction of strong femtosecond laser pulses with the C$_{60}$ molecule employing time-dependent density functional theory with the ionic background treated in a jellium approximation. The laser intensities considered are below the threshold of strong fragmentation but too high for perturbative treatments such as linear response. The nonlinear response of the model to excitations by short pulses of frequencies up to 45eV is presented and analyzed with the help of Kohn-Sham orbital resolved dipole spectra. In femtosecond laser pulses of 800nm wavelength ionization is found to occur multiphoton-like rather than via excitation of a ``giant'' resonance
Interaction of intense laser pulses with atoms and molecules is at the forefront of atomic, molecula...
Non linear absorption of intense few cycle laser pulses in fullerenes is studied by treating it as a...
The work reported in this dissertation represents an investigation into some aspects of resonant and...
Recent progress in the understanding of the primary excitation mechanisms of the C$_{60}$ fullerene ...
This chapter presents notions, facts, and findings on $C_{60}$ and the fullerenes. The chapter discu...
Jaron-Becker A, Becker A, Faisal F. Single-active-electron ionization of C-60 in intense laser pulse...
An explicit electron dynamics approach has been used to calculate the nonlinear optical properties o...
Ionization mechanisms of C60 molecules irradiated by a short intense 800-nm laser pulse are studied....
We study the intensity dependence of ionization and fragmentation of buckminsterfullerene (C-60) in ...
peer reviewedThe photoionization of complex targets, such as endohedral fullerenes, in strong laser ...
We carried out experimental and theoretical investigation of the response of a complex molecule, C60...
Fullerene complexes may play a key role in the design of future molecular electronics and nanostruct...
Theoretical investigations of atoms and molecules interacting with pulsed or continuous wave lasers ...
Optical nonlinearities of fullerenes and their derivatives were demonstrated by means of the femtose...
The sequential absorption of multiple infrared (IR) photons by isolated gas-phase species can lead t...
Interaction of intense laser pulses with atoms and molecules is at the forefront of atomic, molecula...
Non linear absorption of intense few cycle laser pulses in fullerenes is studied by treating it as a...
The work reported in this dissertation represents an investigation into some aspects of resonant and...
Recent progress in the understanding of the primary excitation mechanisms of the C$_{60}$ fullerene ...
This chapter presents notions, facts, and findings on $C_{60}$ and the fullerenes. The chapter discu...
Jaron-Becker A, Becker A, Faisal F. Single-active-electron ionization of C-60 in intense laser pulse...
An explicit electron dynamics approach has been used to calculate the nonlinear optical properties o...
Ionization mechanisms of C60 molecules irradiated by a short intense 800-nm laser pulse are studied....
We study the intensity dependence of ionization and fragmentation of buckminsterfullerene (C-60) in ...
peer reviewedThe photoionization of complex targets, such as endohedral fullerenes, in strong laser ...
We carried out experimental and theoretical investigation of the response of a complex molecule, C60...
Fullerene complexes may play a key role in the design of future molecular electronics and nanostruct...
Theoretical investigations of atoms and molecules interacting with pulsed or continuous wave lasers ...
Optical nonlinearities of fullerenes and their derivatives were demonstrated by means of the femtose...
The sequential absorption of multiple infrared (IR) photons by isolated gas-phase species can lead t...
Interaction of intense laser pulses with atoms and molecules is at the forefront of atomic, molecula...
Non linear absorption of intense few cycle laser pulses in fullerenes is studied by treating it as a...
The work reported in this dissertation represents an investigation into some aspects of resonant and...