Dielectric metasurfaces sustain electromagnetic modes which can be exploited to enhance nonlinear frequency-conversion processes such as third-harmonic generation. In this work we employ electron-beam lithography to fabricate silicon metasurfaces supporting electromagnetic resonances with different quality factors (Q), ruled by the geometry. This allows to investigate the trade-off between resonant enhancement and matching the spectral bandwidth of the ultrafast excitation source. Both experiments and simulations indicate that higher values of Q do not a priori bring about a stronger third-harmonic generation, which correlates to the spectral overlap between the metasurface resonance and the pump bandwidth
Nonlinear wavefront control is a crucial requirement in realizing nonlinear optical applications wit...
Strong field confinement, long-lifetime resonances, and slow-light effects suggest that metasurfaces...
Nonlinear wavefront control is a crucial requirement in realizing nonlinear optical applications wit...
Dielectric metasurfaces sustain electromagnetic modes which can be exploited to enhance nonlinear fr...
Dielectric metasurfaces sustain electromagnetic modes which can be exploited to enhance nonlinear fr...
Dielectric metasurfaces sustain electromagnetic modes which can be exploited to enhance nonlinear fr...
Dielectric metasurfaces sustain electromagnetic modes which can be exploited to enhance nonlinear fr...
Dielectric metasurfaces sustain electromagnetic modes which can be exploited to enhance nonlinear fr...
Dielectric metasurfaces sustain electromagnetic modes which can be exploited to enhance nonlinear fr...
Dielectric metasurfaces sustain electromagnetic modes which can be exploited to enhance nonlinear fr...
Dielectric metasurfaces sustain electromagnetic modes which can be exploited to enhance nonlinear fr...
Nonlinear harmonic generation in metasurfaces has shown great promise for applications such as novel...
The realization of high-Q resonances in a silicon metasurface with various broken-symmetry blocks is...
We present strong enhancement of third harmonic generation in an amorphous silicon metasurface consi...
Using a hydrodynamic approach, we examine bulk- and surface-induced second- and third-harmonic gener...
Nonlinear wavefront control is a crucial requirement in realizing nonlinear optical applications wit...
Strong field confinement, long-lifetime resonances, and slow-light effects suggest that metasurfaces...
Nonlinear wavefront control is a crucial requirement in realizing nonlinear optical applications wit...
Dielectric metasurfaces sustain electromagnetic modes which can be exploited to enhance nonlinear fr...
Dielectric metasurfaces sustain electromagnetic modes which can be exploited to enhance nonlinear fr...
Dielectric metasurfaces sustain electromagnetic modes which can be exploited to enhance nonlinear fr...
Dielectric metasurfaces sustain electromagnetic modes which can be exploited to enhance nonlinear fr...
Dielectric metasurfaces sustain electromagnetic modes which can be exploited to enhance nonlinear fr...
Dielectric metasurfaces sustain electromagnetic modes which can be exploited to enhance nonlinear fr...
Dielectric metasurfaces sustain electromagnetic modes which can be exploited to enhance nonlinear fr...
Dielectric metasurfaces sustain electromagnetic modes which can be exploited to enhance nonlinear fr...
Nonlinear harmonic generation in metasurfaces has shown great promise for applications such as novel...
The realization of high-Q resonances in a silicon metasurface with various broken-symmetry blocks is...
We present strong enhancement of third harmonic generation in an amorphous silicon metasurface consi...
Using a hydrodynamic approach, we examine bulk- and surface-induced second- and third-harmonic gener...
Nonlinear wavefront control is a crucial requirement in realizing nonlinear optical applications wit...
Strong field confinement, long-lifetime resonances, and slow-light effects suggest that metasurfaces...
Nonlinear wavefront control is a crucial requirement in realizing nonlinear optical applications wit...