Impulsive interband excitation with femtosecond near-infrared pulses establishes a plasma response in intrinsic germanium structures fabricated on a silicon substrate. This direct approach activates the plasmonic resonance of the Ge structures and enables their use as optical antennas up to the mid-infrared spectral range. The optical switching lasts for hundreds of picoseconds until charge recombination redshifts the plasma frequency. The full behavior of the structures is modeled by the electrodynamic response established by an electron-hole plasma in a regular array of antennas
We investigate the mid-infrared response of heavily doped germanium films and periodic arrays of nan...
In this work, the growth and the fabrication of heavily doped germanium plasmonic antennas for mid-i...
Recent advances in semiconductor film deposition allow for the growth of heavily-doped germanium wit...
Impulsive interband excitation with femtosecond near-infrared pulses establishes a plasma response i...
Impulsive interband excitation with femtosecond near-infrared pulses establishes a plasma response i...
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...
Plasmonics provides an elegant way to effectively couple optical radiation to single sub-wavelength ...
Germanium nanoantennas are activated by triggering a mid-infrared plasma response via ultrafast inte...
Germanium nanoantennas are activated by triggering a mid-infrared plasma response via ultrafast inte...
Heavily-doped semiconductor films are very promising to produce mid-infrared plasmonic devices for ...
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 ...
CMOS-compatible, heavily-doped semiconductor films are very promising for applications in mid-infra...
We demonstrate third harmonic generation in plasmonic antennas consisting of highly doped germanium ...
We investigate the mid-infrared response of heavily doped germanium films and periodic arrays of nan...
In this work, the growth and the fabrication of heavily doped germanium plasmonic antennas for mid-i...
Recent advances in semiconductor film deposition allow for the growth of heavily-doped germanium wit...
Impulsive interband excitation with femtosecond near-infrared pulses establishes a plasma response i...
Impulsive interband excitation with femtosecond near-infrared pulses establishes a plasma response i...
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...
Plasmonics provides an elegant way to effectively couple optical radiation to single sub-wavelength ...
Germanium nanoantennas are activated by triggering a mid-infrared plasma response via ultrafast inte...
Germanium nanoantennas are activated by triggering a mid-infrared plasma response via ultrafast inte...
Heavily-doped semiconductor films are very promising to produce mid-infrared plasmonic devices for ...
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 ...
CMOS-compatible, heavily-doped semiconductor films are very promising for applications in mid-infra...
We demonstrate third harmonic generation in plasmonic antennas consisting of highly doped germanium ...
We investigate the mid-infrared response of heavily doped germanium films and periodic arrays of nan...
In this work, the growth and the fabrication of heavily doped germanium plasmonic antennas for mid-i...
Recent advances in semiconductor film deposition allow for the growth of heavily-doped germanium wit...