2007
DOI: 10.1063/1.2742334
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Observation of photon recycling in strain-balanced quantum well solar cells

Abstract: Photon recycling in strain balanced quantum well solar cells grown on distributed Bragg reflectors has been observed as a suppression of the dark current and a change in electroluminescence spectra. Comparing devices grown with and without distributed Bragg reflectors we have demonstrated up to a 33% reduction in the ideality n = 1 reverse saturation current. Furthermore, to validate the observations we demonstrate how both the measured dark currents and electroluminescence spectra fit very well to a photon re… Show more

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Cited by 54 publications
(26 citation statements)
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“…We assumed a value of one for the oscillator strength of nanostructured silicon and the reduced mass is taken as half the mass of electron rest mass. The band gap energy is taken as 1.82 eV for a cluster of 18 atoms (a quantum dot of radius 1 nm) [16]. Plugging the numbers in …”
Section: Nanostructuresmentioning
confidence: 99%
“…We assumed a value of one for the oscillator strength of nanostructured silicon and the reduced mass is taken as half the mass of electron rest mass. The band gap energy is taken as 1.82 eV for a cluster of 18 atoms (a quantum dot of radius 1 nm) [16]. Plugging the numbers in …”
Section: Nanostructuresmentioning
confidence: 99%
“…Silver technologies are widely used for manufacturing crystalline silicon solar cells. The role of small particles in solar cells was described previously (Hitz, 2007;Pillai, 2007;Han, 2007;Johnson, 2007). The introduction of nanoparticles into pores of photon absorbers increases their efficiency.…”
Section: Electrical Properties Of Copper Clusters In Porous Silver Ofmentioning
confidence: 99%
“…Various nanostructures have been proposed early (Pillai et al, 2007;Hun et al, 2007;Johnson et al, 2007;Slaoui & Collins, 2007). However, every active element cannot function without electrodes.…”
Section: Metallic Nanocluster Contacts For High-effective Photovoltaimentioning
confidence: 99%
“…QWSCs, first invented by Barnham and Duggan [8], offer an way to improve multi-junction solar cells by the ability to tune their bandgaps, as well as enhancing photon coupling due to recombination being dominated by radiative processes at high concentration (in excess of 200suns) [9] - [11].…”
Section: Quantum Well Solar Cellmentioning
confidence: 99%