We predict and theoretically investigate the unique possibility to control distribution of ultrafast local optical fields in nanosystems in space with nanometer resolution and in time on the femtosecond scale. While the spatial degrees of freedom of the optical radiation do not allow focusing of the light on nanoscale, the phase of the excitation light constitute a functional degree of freedom that permits one to coherently control the distribution of the energy of local fields, concentrating it at a desired location at certain times. We study both a specially designed V-shaped nanostructure and a random planar nanocomposite. Several types of exciting pulses are investigated, which has allowed us to distinguish effects of phase modulation a...
International audienceTo form regular periodic patterns on surface irradiated by ultrafast laser wit...
We present a review on the advances of pulse control and ultrafast coherent excitation of both plasm...
International audienceTo form regular periodic patterns on surface irradiated by ultrafast laser wit...
We predict and quantitatively evaluate the unique possibility of concentrating the energy of an ultr...
Aeschlimann M, Bauer M, Bayer D, et al. Spatiotemporal control of nanooptical excitations. PROCEEDIN...
We present a review on the advances of pulse control and ultrafast coherent excitation of both plasm...
Coherent control is an ingenious tactic to steer a system to a desired optimal state by tailoring th...
We theoretically demonstrate the control of electromagnetic field properties on a sub-diffraction le...
The dramatic advances of nanotechnology experienced in recent years enabled us to fabricate optical ...
We theoretically show that two-photon coherent control yields electron photoemission from metal nano...
Premi extraordinari doctorat 2012-2013Ultrafast pulses allow observation of molecular dynamics with ...
The dramatic advances of nanotechnology experienced in recent years enabled us to fabricate optical ...
Light localization plays an important role in developing high resolution imaging and precision techn...
In this thesis we experimentally developed high-resolution groundbreaking imaging techniques and nov...
Abstract. The combination of pulse shaping techniques for ultrashort laser pulses with nanoplasmonic...
International audienceTo form regular periodic patterns on surface irradiated by ultrafast laser wit...
We present a review on the advances of pulse control and ultrafast coherent excitation of both plasm...
International audienceTo form regular periodic patterns on surface irradiated by ultrafast laser wit...
We predict and quantitatively evaluate the unique possibility of concentrating the energy of an ultr...
Aeschlimann M, Bauer M, Bayer D, et al. Spatiotemporal control of nanooptical excitations. PROCEEDIN...
We present a review on the advances of pulse control and ultrafast coherent excitation of both plasm...
Coherent control is an ingenious tactic to steer a system to a desired optimal state by tailoring th...
We theoretically demonstrate the control of electromagnetic field properties on a sub-diffraction le...
The dramatic advances of nanotechnology experienced in recent years enabled us to fabricate optical ...
We theoretically show that two-photon coherent control yields electron photoemission from metal nano...
Premi extraordinari doctorat 2012-2013Ultrafast pulses allow observation of molecular dynamics with ...
The dramatic advances of nanotechnology experienced in recent years enabled us to fabricate optical ...
Light localization plays an important role in developing high resolution imaging and precision techn...
In this thesis we experimentally developed high-resolution groundbreaking imaging techniques and nov...
Abstract. The combination of pulse shaping techniques for ultrashort laser pulses with nanoplasmonic...
International audienceTo form regular periodic patterns on surface irradiated by ultrafast laser wit...
We present a review on the advances of pulse control and ultrafast coherent excitation of both plasm...
International audienceTo form regular periodic patterns on surface irradiated by ultrafast laser wit...