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Energy conversion / Compound semiconductors / Inorganic compounds / Gallium arsenide / Multijunction photovoltaic cell / Light-emitting diode / Nanowire / Gallium nitride / Photovoltaics / Chemistry / Solar cells / Semiconductor devices


OPTOELECTRONIC DESIGN OF MULTIJUNCTION WIRE-ARRAY SOLAR CELLS[removed]
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Document Date: 2013-09-10 11:45:07


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City

Pasadena / /

Company

Atwater 1 Thomas J. Watson Laboratories / GaP / Ge / /

Country

United States / /

Currency

USD / /

Facility

California Institute of Technology / Kavli Nanoscience Institute / GaAs/Ge tunnel / /

IndustryTerm

metallorganic chemical vapor deposition / shell carrier generation / solar energy applications / overall carrier collection / desirable material systems / multijunction devices / materials systems / tandem wire device / electromagnetic simulation tool / carrier collection / chemical vapor deposition / wire devices / equal overall carrier generation / carrier generation / photovoltaic applications / finite element method device / /

Movie

Si / /

Organization

California Institute of Technology / National Science Foundation / Department of Energy Basic Energy Sciences / Frontier Research Center / Kavli Nanoscience Institute / office of Science / /

Person

Chris T. Chen / Michael G. Deceglie / Michael D. Kelzenberg / Adele C. Tamboli / Nick Strandwitz / Crystal Growth / /

Position

IEEE The author / representative / /

PublishedMedium

Applied Physics Letters / Physical Review / Journal of Applied Physics / Nature Materials / /

RadioStation

AM 1 / /

Technology

semiconductor / semiconductors / simulation / recombination / chemical vapor deposition / /

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