The present status and development of strong-field nano-optics, an emerging field of nonlinear optics, is discussed. A nonperturbative regime of light-matter interactions is reached when the amplitude of the external electromagnetic fields that are driving a material approach or exceed the field strengths that bind the electrons inside the medium. In this strong-field regime, light-matter interactions depend on the amplitude and phase of the field, rather than its intensity, as in more conventional perturbative nonlinear optics. Traditionally such strong-field interactions have been intensely investigated in atomic and molecular systems, and this has resulted in the generation of high-harmonic radiation and laid the foundations for contempo...
The dramatic advances of nanotechnology experienced in recent years enabled us to fabricate optical ...
Light-matter interactions are interesting at high intensities: strong-field effects can result in ul...
Light-matter interactions are interesting at high intensities: strong-field effects can result in ul...
Strong-field physics, an extreme limit of light–matter interaction is expanding into the realm of su...
Attosecond science is based on electron dynamics driven by a strong optical electric field and has e...
Strong-field phenomena are a driving force behind the latest innovations in ultrafast science. As ul...
Strong-field phenomena are a driving force behind the latest innovations in ultrafast science. As ul...
Light fields from modern high-intensity, femtosecond laser systems can produce electrical forces tha...
Doctor of PhilosophyDepartment of PhysicsDaniel RollesModern laser sources can produce bursts of lig...
At high intensities, light–matter interactions are controlled by the electric field of the exciting ...
Doctor of PhilosophyDepartment of PhysicsDaniel RollesModern laser sources can produce bursts of lig...
We report on two experiments about the interaction of femtosecond laser pulses with nano-scale struc...
Metallic nanotips exhibit large electric field enhancements over an extremely broad bandwidth spanni...
This Chapter presents recent findings on nonlinear ionization and photoemission processes at metalli...
Ultra-fast nano-optics is a comparatively young and rapidly growing field of research aiming at prob...
The dramatic advances of nanotechnology experienced in recent years enabled us to fabricate optical ...
Light-matter interactions are interesting at high intensities: strong-field effects can result in ul...
Light-matter interactions are interesting at high intensities: strong-field effects can result in ul...
Strong-field physics, an extreme limit of light–matter interaction is expanding into the realm of su...
Attosecond science is based on electron dynamics driven by a strong optical electric field and has e...
Strong-field phenomena are a driving force behind the latest innovations in ultrafast science. As ul...
Strong-field phenomena are a driving force behind the latest innovations in ultrafast science. As ul...
Light fields from modern high-intensity, femtosecond laser systems can produce electrical forces tha...
Doctor of PhilosophyDepartment of PhysicsDaniel RollesModern laser sources can produce bursts of lig...
At high intensities, light–matter interactions are controlled by the electric field of the exciting ...
Doctor of PhilosophyDepartment of PhysicsDaniel RollesModern laser sources can produce bursts of lig...
We report on two experiments about the interaction of femtosecond laser pulses with nano-scale struc...
Metallic nanotips exhibit large electric field enhancements over an extremely broad bandwidth spanni...
This Chapter presents recent findings on nonlinear ionization and photoemission processes at metalli...
Ultra-fast nano-optics is a comparatively young and rapidly growing field of research aiming at prob...
The dramatic advances of nanotechnology experienced in recent years enabled us to fabricate optical ...
Light-matter interactions are interesting at high intensities: strong-field effects can result in ul...
Light-matter interactions are interesting at high intensities: strong-field effects can result in ul...