We report on studies of electrically excited non-equilibrium 2D electrons and 2D plasmons in an AlGaN/GaN nanostructure. Optical access to 2D plasmons is provided by means of a metal grating fabricated at the nanostructure surface, while the properties of 2D electrons are examined in the samples without metal grating. The paper focuses on the creation of highly non-equilibrium conditions when the effective temperature of 2D electrons is much higher than the crystal lattice temperature. Such conditions are realized by applying short electrical pulses with a low repetition frequency. A method has been developed for independently determining the temperature of hot electrons and the temperature of the crystal lattice under an applied electric f...
We theoretically study the energy relaxation of hot electrons via LO-phonon emission in two-dimensio...
Abstract Plasmonic generation of hot carriers in metallic nanostructures has attracted much attentio...
Plasmonic waves are waves of mobile charge carriers caused by their collective oscillations. They ca...
We report on studies of electrically excited non-equilibrium 2D electrons and 2D plasmons in an AlGa...
We report the studies on optical properties of a GaN/AlGaN heterostructure with a surface metal grat...
Low-temperature photoluminescence measurement is performed on an undoped AlxGa1-xN/GaN heterostructu...
Electrically driven broadband modulator with large modulation depth and high speed is in high demand...
The active channels in AlGaN/GaN-based heterostructures are studied under different applied electric...
The two-dimensional (2D) electron energy relaxation in Al 0.25Ga 0.75N/AlN/GaN heterostructures was ...
The two-dimensional (2D) electron energy relaxation in Al 0.83In 0.17N/AlN/GaN heterostructures has ...
The two-dimensional (2D) electron energy relaxation in Al0.83In0.17N/AlN/GaN heterostructures has be...
Photoluminescence (PL) and temperature-dependent Hall effect measurements were carried out in (0001)...
We have presented the results of terahertz time-domain spectroscopy measurements and a rigorous elec...
Pronounced resonant absorption and frequency dispersion associated with an excitation of collective ...
We report the experimental studies of hot electron energy relaxation and capture in a low electron m...
We theoretically study the energy relaxation of hot electrons via LO-phonon emission in two-dimensio...
Abstract Plasmonic generation of hot carriers in metallic nanostructures has attracted much attentio...
Plasmonic waves are waves of mobile charge carriers caused by their collective oscillations. They ca...
We report on studies of electrically excited non-equilibrium 2D electrons and 2D plasmons in an AlGa...
We report the studies on optical properties of a GaN/AlGaN heterostructure with a surface metal grat...
Low-temperature photoluminescence measurement is performed on an undoped AlxGa1-xN/GaN heterostructu...
Electrically driven broadband modulator with large modulation depth and high speed is in high demand...
The active channels in AlGaN/GaN-based heterostructures are studied under different applied electric...
The two-dimensional (2D) electron energy relaxation in Al 0.25Ga 0.75N/AlN/GaN heterostructures was ...
The two-dimensional (2D) electron energy relaxation in Al 0.83In 0.17N/AlN/GaN heterostructures has ...
The two-dimensional (2D) electron energy relaxation in Al0.83In0.17N/AlN/GaN heterostructures has be...
Photoluminescence (PL) and temperature-dependent Hall effect measurements were carried out in (0001)...
We have presented the results of terahertz time-domain spectroscopy measurements and a rigorous elec...
Pronounced resonant absorption and frequency dispersion associated with an excitation of collective ...
We report the experimental studies of hot electron energy relaxation and capture in a low electron m...
We theoretically study the energy relaxation of hot electrons via LO-phonon emission in two-dimensio...
Abstract Plasmonic generation of hot carriers in metallic nanostructures has attracted much attentio...
Plasmonic waves are waves of mobile charge carriers caused by their collective oscillations. They ca...