The timescale of electronic cooling is an important parameter controlling the performance of devices based on quantum materials for optoelectronic, thermoelectric and thermal management applications. In most conventional materials, cooling proceeds via the emission of phonons, a relatively slow process that can bottleneck the carrier relaxation dynamics, thus degrading the device performance. Here we present the theory of near-field radiative heat transfer, that occurs when a two-dimensional electron system is coupled via the non-retarded Coulomb interaction to a three-dimensional bulk that can behave as a very efficient electronic heat sink. We apply our theory to study the cooling dynamics of surface states of three dimensional topologica...
Semiconductor quantum wells are ubiquitous in high-performance optoelectronic devices such as solar ...
Absorption of photons by a semiconductor with an energy exceeding the band gap transition results in...
Laser cooling of solids currently has a temperature floor of 50 - 100 K. We propose a method that co...
Understanding cooling of hot charge carriers in semiconductor quantum dots (QDs) is of fundamental i...
An important goal in nanoelectromechanics is to cool the vibrational motion, ideally to its quantum ...
peer reviewedMany promising optoelectronic devices, such as broadband photodetectors, nonlinear freq...
ICFO was supported the Generalitat de Catalunya through the CERCA program.Many promising optoelectro...
We perform time- and angle-resolved photoemission spectroscopy of a prototypical topological insulat...
Understanding cooling of hot charge carriers in semiconductor quantum dots (QDs) is of fundamental i...
Abstract Nonradiative processes govern efficiencies of semiconductor nanocrystal (NC)-based devices....
We investigate the energy relaxation of hot carriers produced by photoexcitation of graphene through...
Hot electrons can dramatically improve the efficiency of solar cells and sensitize energetically-dem...
Controlling energy flows in solids through switchable electron-lattice cooling can grant access to a...
Evidence is accumulating for the crucial role of a solid’s free electrons in the dynamics of solid–l...
Semiconductor quantum wells are ubiquitous in high-performance optoelectronic devices such as solar ...
Semiconductor quantum wells are ubiquitous in high-performance optoelectronic devices such as solar ...
Absorption of photons by a semiconductor with an energy exceeding the band gap transition results in...
Laser cooling of solids currently has a temperature floor of 50 - 100 K. We propose a method that co...
Understanding cooling of hot charge carriers in semiconductor quantum dots (QDs) is of fundamental i...
An important goal in nanoelectromechanics is to cool the vibrational motion, ideally to its quantum ...
peer reviewedMany promising optoelectronic devices, such as broadband photodetectors, nonlinear freq...
ICFO was supported the Generalitat de Catalunya through the CERCA program.Many promising optoelectro...
We perform time- and angle-resolved photoemission spectroscopy of a prototypical topological insulat...
Understanding cooling of hot charge carriers in semiconductor quantum dots (QDs) is of fundamental i...
Abstract Nonradiative processes govern efficiencies of semiconductor nanocrystal (NC)-based devices....
We investigate the energy relaxation of hot carriers produced by photoexcitation of graphene through...
Hot electrons can dramatically improve the efficiency of solar cells and sensitize energetically-dem...
Controlling energy flows in solids through switchable electron-lattice cooling can grant access to a...
Evidence is accumulating for the crucial role of a solid’s free electrons in the dynamics of solid–l...
Semiconductor quantum wells are ubiquitous in high-performance optoelectronic devices such as solar ...
Semiconductor quantum wells are ubiquitous in high-performance optoelectronic devices such as solar ...
Absorption of photons by a semiconductor with an energy exceeding the band gap transition results in...
Laser cooling of solids currently has a temperature floor of 50 - 100 K. We propose a method that co...