We report the hot photoexcited electron transfer across the coaxial interface of a cylindrical core-shell nanowire. Modulation of the transfer rates, manifested as a large tunability of the voltage onset of negative differential resistance and of voltage-current phase, is achieved using three different modes. The coupling of electrostatic gating, incident photon energy, and the incident photon intensity to transfer rates is facilitated by the combined influences of geometric confinement and heterojunction shape on hot-electron transfer, and by electron-electron scattering rates that can be altered by varying the incident photon flux, with evidence of weak electron-phonon scattering. Dynamic manipulation of this transfer rate permits the in...
In modern electronics and optoelectronics, hot electron behaviors are highly concerned, as they dete...
We report on individual-InAs nanowire optoelectronic devices which can be tailored to exhibit either...
Temperature-dependent polarized microphotoluminescencemeasurements of single GaAs∕AlGaAs core-shell ...
In optoelectronic devices such as solar cells and photodetectors, a portion of electron-hole pairs i...
Nanowires bring new possibilities to the field of hot-carrier photovoltaics by providing flexibility...
We use transient Rayleigh scattering to study the thermalization of hot photoexcited carriers in sin...
Group III-V coaxial core-shell semiconducting nanowire heterostructures possess unique advantages ov...
A hot-carrier solar cell aims to generate power from energetic, photoexcited, charge carriers, so ca...
Hot carrier harvest could save 30% energy loss in solar cells. So far, however, it is still unreacha...
Hot electron relaxation and transport in nanostructures involve a multitude of ultrafast processes w...
Using the excess energy of charge carriers excited above the band edge (hot carriers) could pave the...
This thesis seeks to addresses a question raised in the photovoltaic literature: “How can the kineti...
Semiconductor nanowire heterostructures have been shown to provide appealing properties for optoelec...
The photothermoelectric (PTE) effect uses nonuniform absorption of light to produce a voltage via th...
The photothermoelectric (PTE) effect uses nonuniform absorption of light to produce a voltage via th...
In modern electronics and optoelectronics, hot electron behaviors are highly concerned, as they dete...
We report on individual-InAs nanowire optoelectronic devices which can be tailored to exhibit either...
Temperature-dependent polarized microphotoluminescencemeasurements of single GaAs∕AlGaAs core-shell ...
In optoelectronic devices such as solar cells and photodetectors, a portion of electron-hole pairs i...
Nanowires bring new possibilities to the field of hot-carrier photovoltaics by providing flexibility...
We use transient Rayleigh scattering to study the thermalization of hot photoexcited carriers in sin...
Group III-V coaxial core-shell semiconducting nanowire heterostructures possess unique advantages ov...
A hot-carrier solar cell aims to generate power from energetic, photoexcited, charge carriers, so ca...
Hot carrier harvest could save 30% energy loss in solar cells. So far, however, it is still unreacha...
Hot electron relaxation and transport in nanostructures involve a multitude of ultrafast processes w...
Using the excess energy of charge carriers excited above the band edge (hot carriers) could pave the...
This thesis seeks to addresses a question raised in the photovoltaic literature: “How can the kineti...
Semiconductor nanowire heterostructures have been shown to provide appealing properties for optoelec...
The photothermoelectric (PTE) effect uses nonuniform absorption of light to produce a voltage via th...
The photothermoelectric (PTE) effect uses nonuniform absorption of light to produce a voltage via th...
In modern electronics and optoelectronics, hot electron behaviors are highly concerned, as they dete...
We report on individual-InAs nanowire optoelectronic devices which can be tailored to exhibit either...
Temperature-dependent polarized microphotoluminescencemeasurements of single GaAs∕AlGaAs core-shell ...