Applied Physics Letters · 2014 · 71 citations · 19 references
EngineeringPhotovoltaic DevicesOptoelectronic DevicesEnergy Selective ContactIngaas QuantumPhotovoltaicsSemiconductorsElectronic DevicesExperimental DemonstrationSolar Cell StructuresCompound SemiconductorSemiconductor TechnologyElectrical EngineeringPhotoluminescencePhysicsSolar PowerQuantum DeviceIngaas Single QuantumPhotoelectric MeasurementApplied PhysicsTheoretical StudiesOptoelectronicsSolar Cell Materials
An unambiguous observation of hot-carrier photocurrent from an InGaAs single quantum well solar cell is reported. Simultaneous photo-current and photoluminescence measurements were performed for incident power density 0.04–3 kW cm−2, lattice temperature 10 K, and forward bias 1.2 V. An order of magnitude photocurrent increase was observed for non-equilibrium hot-carrier temperatures >35 K. This photocurrent activation temperature is consistent with that of equilibrium carriers in a lattice at elevated temperature. The observed hot-carrier photo-current is extracted from the well over an energy selective GaAs barrier, thus integrating two essential components of a hot-carrier solar cell: a hot-carrier absorber and an energy selective contact.
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Efficiency of hot-carrier solar energy converters
R. Ross, Arthur J. Nozik · Journal of Applied Physics · 1982 · 959 citations