We present a study of the highly nonlinear optical excitation of noble gases in tapered hollow waveguides using few-femtosecond laser pulses. The local plasmonic field enhancement induces the generation of a nanometric plasma, resulting in incoherent extreme-ultraviolet fluorescence from optical transitions of neutral and ionized xenon, argon, and neon. Despite sufficient intensity in the waveguide, high-order harmonic generation is not observed. The fluorescent emission exhibits a strong bistability manifest as an intensity hysteresis, giving strong indications for multistep collisional excitations
The enhancement and control of non-linear phenomena at a nanometer scale has a wide range of applica...
International audienceThe enhancement and control of non-linear phenomena at a nanometer scale has a...
Modern laser sources nowadays deliver ultrashort light pulses reaching few cycles in duration, high ...
The present (cumulative) thesis examines fundamentals of nanostructure-enhanced extreme-ultraviolet ...
n Chap. 18, we demonstrated polarization-sensitive imaging at extreme-ultraviolet (EUV) wavelengths ...
We demonstrate nanostructure-enhanced extreme ultraviolet fluorescence from noble gases driven by lo...
Nano-structures excited by light can enhance locally the electric field when tuned to plasmonic reso...
Plasmonic nanostructures offer unique possibilities for enhancing linear and nonlinear optical proce...
We fabricate a plasmonic nanoslot that is capable of performing enhanced single molecule detection a...
Coherent XUV sources, which may operate at MHz repetition rate, could find applications in high-prec...
International audienceNanoapertures milled in metallic films called zero-mode waveguides (ZMWs) over...
The emission of high-order harmonics in the extreme ultraviolet range from the interaction of a shor...
Interactions between electrons and photons are a source of rich physics from atomic to astronomical ...
We present theoretical investigations of high-order harmonic generation (HHG) resulting from the int...
Highly nonlinear optical processes require high intensities, typically achieved with ultrashort lase...
The enhancement and control of non-linear phenomena at a nanometer scale has a wide range of applica...
International audienceThe enhancement and control of non-linear phenomena at a nanometer scale has a...
Modern laser sources nowadays deliver ultrashort light pulses reaching few cycles in duration, high ...
The present (cumulative) thesis examines fundamentals of nanostructure-enhanced extreme-ultraviolet ...
n Chap. 18, we demonstrated polarization-sensitive imaging at extreme-ultraviolet (EUV) wavelengths ...
We demonstrate nanostructure-enhanced extreme ultraviolet fluorescence from noble gases driven by lo...
Nano-structures excited by light can enhance locally the electric field when tuned to plasmonic reso...
Plasmonic nanostructures offer unique possibilities for enhancing linear and nonlinear optical proce...
We fabricate a plasmonic nanoslot that is capable of performing enhanced single molecule detection a...
Coherent XUV sources, which may operate at MHz repetition rate, could find applications in high-prec...
International audienceNanoapertures milled in metallic films called zero-mode waveguides (ZMWs) over...
The emission of high-order harmonics in the extreme ultraviolet range from the interaction of a shor...
Interactions between electrons and photons are a source of rich physics from atomic to astronomical ...
We present theoretical investigations of high-order harmonic generation (HHG) resulting from the int...
Highly nonlinear optical processes require high intensities, typically achieved with ultrashort lase...
The enhancement and control of non-linear phenomena at a nanometer scale has a wide range of applica...
International audienceThe enhancement and control of non-linear phenomena at a nanometer scale has a...
Modern laser sources nowadays deliver ultrashort light pulses reaching few cycles in duration, high ...