We report a quantitative model of a near-field thermophotovoltaic (TPV) device consisting in a thermal source located in the near field of a TPV cell. The enhanced radiative transfer at short distance leads to an increase of the photogeneration current. We analyze quantitatively other potential near-field effects, in particular, on the dark current. We also study the influence of the modification of the spectrum of the sources in the near field, comparing the case of a tungsten source with the case of a quasimonochromatic source. Our model leads to a quantitative evaluation of the near-field TPV device output electric power and efficiency
Thermophotovoltaic conversion (TPV) is very coveted nowadays because of its output and its high dens...
Conversion of medium-grade heat (temperature from 500 to 1000 K) into electricity is important in ap...
48 pages; 6 figures; 4 tables; 2 supplementary figuresAn indium arsenide photovoltaic cell with gold...
We report a quantitative model of a near-field thermophotovoltaic (TPV) device consisting in a therm...
A near-field thermophotovoltaic (TPV) system with a multilayer emitter of alternate tungsten and alu...
Near-field thermophotovoltaic holds the potential for achieving high-power density and energy conver...
International audienceA huge amount of thermal energy is available close to material surfaces in rad...
International audienceTo date, the champion thermophotovoltaic (TPV) cells have an efficiency in the...
International audienceThermophotonics (TPX) is a technology close to thermophotovoltaics (TPV), wher...
Nano-gap thermophotovoltaic energy converters have the potential to be excellent generators of elect...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
Solid-state heat-to-electrical power converters are thermodynamic engines that use fundamental parti...
International audienceThe importance of considering near-field effects on photon recycling and spont...
Understanding energy transfer via near-field thermal radiation is critical for the future advances o...
A huge amount of thermal energy is available close to material surfaces in radiative and non-radiati...
Thermophotovoltaic conversion (TPV) is very coveted nowadays because of its output and its high dens...
Conversion of medium-grade heat (temperature from 500 to 1000 K) into electricity is important in ap...
48 pages; 6 figures; 4 tables; 2 supplementary figuresAn indium arsenide photovoltaic cell with gold...
We report a quantitative model of a near-field thermophotovoltaic (TPV) device consisting in a therm...
A near-field thermophotovoltaic (TPV) system with a multilayer emitter of alternate tungsten and alu...
Near-field thermophotovoltaic holds the potential for achieving high-power density and energy conver...
International audienceA huge amount of thermal energy is available close to material surfaces in rad...
International audienceTo date, the champion thermophotovoltaic (TPV) cells have an efficiency in the...
International audienceThermophotonics (TPX) is a technology close to thermophotovoltaics (TPV), wher...
Nano-gap thermophotovoltaic energy converters have the potential to be excellent generators of elect...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
Solid-state heat-to-electrical power converters are thermodynamic engines that use fundamental parti...
International audienceThe importance of considering near-field effects on photon recycling and spont...
Understanding energy transfer via near-field thermal radiation is critical for the future advances o...
A huge amount of thermal energy is available close to material surfaces in radiative and non-radiati...
Thermophotovoltaic conversion (TPV) is very coveted nowadays because of its output and its high dens...
Conversion of medium-grade heat (temperature from 500 to 1000 K) into electricity is important in ap...
48 pages; 6 figures; 4 tables; 2 supplementary figuresAn indium arsenide photovoltaic cell with gold...