© 2020 Author(s). We demonstrate an inverted metamorphic multijunction (IMM) photovoltaic cell comprising lattice-mismatched 1.2 eV AlGaInAs and 1.0 eV GaInAs junctions optimized for high-temperature thermophotovoltaic (TPV) applications. This device differs from traditional IMM solar cells because the mismatched junctions are grown at a single lattice constant. This architecture enables removal of the compositionally graded buffer that otherwise filters light from the junctions below and absorbs sub-bandgap light via free-carrier absorption. Sub-bandgap absorption dramatically reduces the efficiency of TPV systems using high reflectivity cells to enable band edge spectrum filtering. Three components required development to enable this devi...
AstroPower is developing InGaAsSb thermophotovoltaic (TPV) devices. This photovoltaic cell is a two-...
This paper discusses semiconductor device research paths under investigation with the aim of reachin...
It is well-known, that the efficiency of Ga_0_._5_1In_0_._4_9P/GaAs monolithic tandem solar cells ca...
© 2020 Author(s). We demonstrate an inverted metamorphic multijunction (IMM) photovoltaic cell compr...
We demonstrate high efficiency performance in two ultra-thin, Ge-free III-V semiconductor triple-jun...
We present inverted metamorphic Ga0.3In0.7As photovoltaic converters with sub-0.60 eV bandgaps grown...
The use of lattice-mismatched materials offers an additional degree of freedom to the design of an o...
We present recent improvements to the 4-junction inverted metamorphic solar cell. The device now inc...
To improve the conversion efficiency of thermophotovoltaic devices, we designed a thermophotovoltaic...
Thermophotovoltaic (TPV) devices based on GaInAsSb lattice matched to GaSb (100) substrates have dem...
Thermophotovoltaics are promising solid-state energy converters for a variety of applications such a...
We develop lattice-mismatched GaInAsP as an alternative alloy to pure As-based alloys currently used...
Inverted metamorphic triple junction (IMM3J) GaInP/GaAs/InGaAs solar cells have the advantages of hi...
Future terrestrial concentrator cells will likely feature four or more junctions. The better divisio...
Future terrestrial concentrator cells will likely feature four or more junctions. The better divisio...
AstroPower is developing InGaAsSb thermophotovoltaic (TPV) devices. This photovoltaic cell is a two-...
This paper discusses semiconductor device research paths under investigation with the aim of reachin...
It is well-known, that the efficiency of Ga_0_._5_1In_0_._4_9P/GaAs monolithic tandem solar cells ca...
© 2020 Author(s). We demonstrate an inverted metamorphic multijunction (IMM) photovoltaic cell compr...
We demonstrate high efficiency performance in two ultra-thin, Ge-free III-V semiconductor triple-jun...
We present inverted metamorphic Ga0.3In0.7As photovoltaic converters with sub-0.60 eV bandgaps grown...
The use of lattice-mismatched materials offers an additional degree of freedom to the design of an o...
We present recent improvements to the 4-junction inverted metamorphic solar cell. The device now inc...
To improve the conversion efficiency of thermophotovoltaic devices, we designed a thermophotovoltaic...
Thermophotovoltaic (TPV) devices based on GaInAsSb lattice matched to GaSb (100) substrates have dem...
Thermophotovoltaics are promising solid-state energy converters for a variety of applications such a...
We develop lattice-mismatched GaInAsP as an alternative alloy to pure As-based alloys currently used...
Inverted metamorphic triple junction (IMM3J) GaInP/GaAs/InGaAs solar cells have the advantages of hi...
Future terrestrial concentrator cells will likely feature four or more junctions. The better divisio...
Future terrestrial concentrator cells will likely feature four or more junctions. The better divisio...
AstroPower is developing InGaAsSb thermophotovoltaic (TPV) devices. This photovoltaic cell is a two-...
This paper discusses semiconductor device research paths under investigation with the aim of reachin...
It is well-known, that the efficiency of Ga_0_._5_1In_0_._4_9P/GaAs monolithic tandem solar cells ca...