Strong field confinement, long-lifetime resonances, and slow-light effects suggest that metasurfaces are a promising tool for nonlinear optical applications. These nanostructured devices have been utilized for relatively high efficiency solid-state high-harmonic generation platforms, four-wave mixing, and Raman scattering experiments, among others. Here, we report the first all-dielectric metasurface to enhance harmonic generation from a surrounding gas, achieving as much as a factor of 45 increase in the overall yield for Argon atoms. When compared to metal nanostructures, dielectrics are more robust against damage for high power applications such as those using atomic gases. We employ dimerized high-contrast gratings fabricated in silicon...
The realization of high-Q resonances in a silicon metasurface with various broken-symmetry blocks is...
The advent of high-harmonic generation in gases 30 years ago set the foundation for attosecond scien...
Atomically thin monolayers of transition metal dichalcogenides (TMDs) have emerged as a promising cl...
We demonstrate nonlinear silicon metasurfaces empowered by collective localized modes governed by bo...
The advent of high-harmonic generation in gases 30 years ago set the foundation for attosecond scien...
Nonlinear light generation is a key phenomenon in many optical systems. Recently, the field of nonli...
Metasurfaces control optical wavefronts via arrays of nanoscale resonators laid out across a surface...
Nonlinear light generation is a key phenomenon in many optical systems. Recently, the field of nonli...
All-dielectric metasurfaces have recently led to a paradigm shift in nonlinear optics as they allow ...
Nonlinear light generation is a key phenomenon in many optical systems. Recently, the field of nonli...
Nonlinear light generation is a key phenomenon in many optical systems. Recently, the field of nonli...
Nonlinear light generation is a key phenomenon in many optical systems. Recently, the field of nonli...
Abstract Metasurfaces have recently gained extensive interest because of their extrao...
High-index dielectric nanostructures have emerged as an appealing complement to plasmonic nanostruct...
Enhancing the efficiency of second-harmonic generation using all-dielectric metasurfaces to date has...
The realization of high-Q resonances in a silicon metasurface with various broken-symmetry blocks is...
The advent of high-harmonic generation in gases 30 years ago set the foundation for attosecond scien...
Atomically thin monolayers of transition metal dichalcogenides (TMDs) have emerged as a promising cl...
We demonstrate nonlinear silicon metasurfaces empowered by collective localized modes governed by bo...
The advent of high-harmonic generation in gases 30 years ago set the foundation for attosecond scien...
Nonlinear light generation is a key phenomenon in many optical systems. Recently, the field of nonli...
Metasurfaces control optical wavefronts via arrays of nanoscale resonators laid out across a surface...
Nonlinear light generation is a key phenomenon in many optical systems. Recently, the field of nonli...
All-dielectric metasurfaces have recently led to a paradigm shift in nonlinear optics as they allow ...
Nonlinear light generation is a key phenomenon in many optical systems. Recently, the field of nonli...
Nonlinear light generation is a key phenomenon in many optical systems. Recently, the field of nonli...
Nonlinear light generation is a key phenomenon in many optical systems. Recently, the field of nonli...
Abstract Metasurfaces have recently gained extensive interest because of their extrao...
High-index dielectric nanostructures have emerged as an appealing complement to plasmonic nanostruct...
Enhancing the efficiency of second-harmonic generation using all-dielectric metasurfaces to date has...
The realization of high-Q resonances in a silicon metasurface with various broken-symmetry blocks is...
The advent of high-harmonic generation in gases 30 years ago set the foundation for attosecond scien...
Atomically thin monolayers of transition metal dichalcogenides (TMDs) have emerged as a promising cl...