The generation of surface plasmon resonances (SPR) in laser-induced periodic surface structures (LIPSS) allows their application in the field of optical sensing, such as the detection of refractive index variations in gases and liquids. We have fabricated gold-coated LIPSS nanostructures on stainless steel substrates by using femtosecond laser nano-ablation. This technique is a low-cost and high-throughput fabrication method applicable to fast and large-scale manufacturing. The depth profile of the fabricated LIPSS shows a central dip at the top of each ripple that split the geometry. The actual topography is modeled and included in a computational electromagnetism package to obtain the expected optical response under the experimental condi...
During the last two decades, the fields of nanotechnology and lasers are growing rapidly, introducin...
Laser Induced Periodic Surface Structures (LIPSS) have been known to the scientific world for almost...
Nanoconstruction of metals is a significant challenge for the future manufacturing of plasmonic devi...
The generation of surface plasmon resonances (SPR) in laser-induced periodic surface structures (LIP...
Femtosecond lasers have transformed the field of material processing by allowing the precise ablatio...
Publisher's version.(útgefin grein)Fabrication and sensor application of a simple plasmonic structur...
Highly regular laser-induced periodic surface structures (HR-LIPSS) have been fabricated on surfaces...
Laser-induced periodic surface structures (LIPSS) have been studied theoretically employing generali...
Waveplates modify polarization by generating a phase change. Laser Induced Periodic Surface Structur...
Laser-Induced Periodic Surface Structures (LIPSS) manufacturing is a convenient laser direct-writing...
Surface plasmons are bound TM polarized electromagnetic waves that propagate along the interface of ...
We report on the single-step fabrication of homogeneous and highly ordered Laser Induced Periodic Su...
We present a refractometric sensor realized as a stack of metallic gratings with subwavelength featu...
Understanding the mechanisms and controlling the possibilities of surface nanostructuring is of cru...
Surface plasmon resonance has attracted more and more attention thanks to its wide range of applicat...
During the last two decades, the fields of nanotechnology and lasers are growing rapidly, introducin...
Laser Induced Periodic Surface Structures (LIPSS) have been known to the scientific world for almost...
Nanoconstruction of metals is a significant challenge for the future manufacturing of plasmonic devi...
The generation of surface plasmon resonances (SPR) in laser-induced periodic surface structures (LIP...
Femtosecond lasers have transformed the field of material processing by allowing the precise ablatio...
Publisher's version.(útgefin grein)Fabrication and sensor application of a simple plasmonic structur...
Highly regular laser-induced periodic surface structures (HR-LIPSS) have been fabricated on surfaces...
Laser-induced periodic surface structures (LIPSS) have been studied theoretically employing generali...
Waveplates modify polarization by generating a phase change. Laser Induced Periodic Surface Structur...
Laser-Induced Periodic Surface Structures (LIPSS) manufacturing is a convenient laser direct-writing...
Surface plasmons are bound TM polarized electromagnetic waves that propagate along the interface of ...
We report on the single-step fabrication of homogeneous and highly ordered Laser Induced Periodic Su...
We present a refractometric sensor realized as a stack of metallic gratings with subwavelength featu...
Understanding the mechanisms and controlling the possibilities of surface nanostructuring is of cru...
Surface plasmon resonance has attracted more and more attention thanks to its wide range of applicat...
During the last two decades, the fields of nanotechnology and lasers are growing rapidly, introducin...
Laser Induced Periodic Surface Structures (LIPSS) have been known to the scientific world for almost...
Nanoconstruction of metals is a significant challenge for the future manufacturing of plasmonic devi...