We demonstrate third harmonic generation in plasmonic antennas consisting of highly doped germanium grown on silicon substrates and designed to be resonant in the mid-infrared frequency range that is inaccessible with conventional nonlinear plasmonic materials. Owing to the near-field enhancement, the result is an ultrafast, subdiffraction, coherent light source with a wavelength tunable between 3 and 5 µm, and ideally overlapping with the fingerprint region of molecular vibrations. To observe the nonlinearity in this challenging spectral window, a high-power femtosecond laser system equipped with parametric frequency conversion in combination with an all-reflective confocal microscope setup is employed. We demonstrate spatially resolved ma...
International audienceEnhancing ultrafast nonlinear processes at a nanometer scale has the potential...
ABSTRACT: Plasmonic nanoantennas are efficient devices to concentrate light in spatial regions much ...
We investigate the mid-infrared response of heavily doped germanium films and periodic arrays of nan...
We demonstrate third harmonic generation in plasmonic antennas consisting of highly doped germanium ...
We explore the nonlinear optical properties of plasmonic semiconductor antennas resonant in the mid ...
We investigate the nonlinear optical properties of single resonant plasmonic antennas fabricated fro...
We investigate the nonlinear optical properties of single resonant plasmonic antennas fabricated fro...
We explore the nonlinear optical properties of plasmonic semiconductor antennas resonant in the mid ...
Recent advances in semiconductor film deposition allow for the growth of heavily-doped germanium wit...
Recent advances in semiconductor film deposition allow for the growth of heavily-doped germanium wit...
Plasmonics provides an elegant way to effectively couple optical radiation to single sub-wavelength ...
Femtosecond optical pulses tunable in the near infrared are exploited to drive third harmonic genera...
International audienceEnhancing ultrafast nonlinear processes at a nanometer scale has the potential...
ABSTRACT: Plasmonic nanoantennas are efficient devices to concentrate light in spatial regions much ...
We investigate the mid-infrared response of heavily doped germanium films and periodic arrays of nan...
We demonstrate third harmonic generation in plasmonic antennas consisting of highly doped germanium ...
We explore the nonlinear optical properties of plasmonic semiconductor antennas resonant in the mid ...
We investigate the nonlinear optical properties of single resonant plasmonic antennas fabricated fro...
We investigate the nonlinear optical properties of single resonant plasmonic antennas fabricated fro...
We explore the nonlinear optical properties of plasmonic semiconductor antennas resonant in the mid ...
Recent advances in semiconductor film deposition allow for the growth of heavily-doped germanium wit...
Recent advances in semiconductor film deposition allow for the growth of heavily-doped germanium wit...
Plasmonics provides an elegant way to effectively couple optical radiation to single sub-wavelength ...
Femtosecond optical pulses tunable in the near infrared are exploited to drive third harmonic genera...
International audienceEnhancing ultrafast nonlinear processes at a nanometer scale has the potential...
ABSTRACT: Plasmonic nanoantennas are efficient devices to concentrate light in spatial regions much ...
We investigate the mid-infrared response of heavily doped germanium films and periodic arrays of nan...