Plasmonic nanostructures hold promise for the realization of ultra-thin sub-wavelength devices, reducing power operating thresholds and enabling nonlinear optical functionality in metasurfaces. However, this promise is substantially undercut by absorption introduced by resistive losses, causing the metasurface community to turn away from plasmonics in favour of alternative material platforms (e.g., dielectrics) that provide weaker field enhancement, but more tolerable losses. Here, we report a plasmonic metasurface with a quality-factor (Q-factor) of 2340 in the telecommunication C band by exploiting surface lattice resonances (SLRs), exceeding the record by an order of magnitude. Additionally, we show that SLRs retain many of the same bene...
Nonlinear processes are important in many fields of photonics ranging from biomedical imaging to ult...
Manipulating light is highly desired in photonics research. Restricted by the variable range of perm...
This thesis summarises my PhD research towards applying nano-scale dielectric resonators (DRs) to op...
Plasmonic nanostructures hold promise for the realization of ultra-thin sub-wavelength devices, redu...
Nonlinear optical phenomena are paramount in many photonic applications ranging from frequency broad...
Nonlinear optical processes are important in many photonic applications ranging from optical communi...
Multiresonant metasurfaces could enable many applications in filtering, sensing, and nonlinear optic...
Frequency conversion of light can be dramatically enhanced using high quality factor (Q-factor) reso...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
International audienceWhen metal nanoparticles are arranged in an ordered array, they may scatter li...
Metasurfaces are ultrathin, quasi-two-dimensional materials that are engineered to control and manip...
Plasmonic metasurfaces exhibiting collective responses known as surface lattice resonances (SLRs) sh...
Resonances in optical systems are useful for many applications, such as frequency comb generation, o...
Diffraction of light in periodic structures is observed in a variety of systems including atoms, sol...
Nonlinear processes are important in many fields of photonics ranging from biomedical imaging to ult...
Manipulating light is highly desired in photonics research. Restricted by the variable range of perm...
This thesis summarises my PhD research towards applying nano-scale dielectric resonators (DRs) to op...
Plasmonic nanostructures hold promise for the realization of ultra-thin sub-wavelength devices, redu...
Nonlinear optical phenomena are paramount in many photonic applications ranging from frequency broad...
Nonlinear optical processes are important in many photonic applications ranging from optical communi...
Multiresonant metasurfaces could enable many applications in filtering, sensing, and nonlinear optic...
Frequency conversion of light can be dramatically enhanced using high quality factor (Q-factor) reso...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
International audienceWhen metal nanoparticles are arranged in an ordered array, they may scatter li...
Metasurfaces are ultrathin, quasi-two-dimensional materials that are engineered to control and manip...
Plasmonic metasurfaces exhibiting collective responses known as surface lattice resonances (SLRs) sh...
Resonances in optical systems are useful for many applications, such as frequency comb generation, o...
Diffraction of light in periodic structures is observed in a variety of systems including atoms, sol...
Nonlinear processes are important in many fields of photonics ranging from biomedical imaging to ult...
Manipulating light is highly desired in photonics research. Restricted by the variable range of perm...
This thesis summarises my PhD research towards applying nano-scale dielectric resonators (DRs) to op...