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High Efficiency Quantum Well Waveguide Solar Cells and Methods for Constructing the SamePhoton absorption, and thus current generation, is hindered in conventional thin-film solar cell designs, including quantum well structures, by the limited path length of incident light passing vertically through the device. Optical scattering into lateral waveguide structures provides a physical mechanism to increase photocurrent generation through in-plane light trapping. However, the insertion of wells of high refractive index material with lower energy gap into the device structure often results in lower voltage operation, and hence lower photovoltaic power conversion efficiency. The voltage output of an InGaAs quantum well waveguide photovoltaic device can be increased by employing a III-V material structure with an extended wide band gap emitter heterojunction. Analysis of the light IV characteristics reveals that non-radiative recombination components of the underlying dark diode current have been reduced, exposing the limiting radiative recombination component and providing a pathway for realizing solar-electric conversion efficiency of 30% or more in single junction cells.
Document ID
20150003402
Acquisition Source
Headquarters
Document Type
Other - Patent
Authors
Welser, Roger E.
Sood, Ashok K.
Date Acquired
March 20, 2015
Publication Date
December 30, 2014
Subject Category
Energy Production And Conversion
Report/Patent Number
Patent Application Number: US-Patent-Appl-SN-13/587,530
Patent Number: US-Patent-8,921,687
Funding Number(s)
CONTRACT_GRANT: NNX11CE59P
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
Patent
US-Patent-8,921,687
Patent Application
US-Patent-Appl-SN-13/587,530
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