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Technology / Semiconductor devices / Energy conversion / Optoelectronics / Photonics / Plasmonic solar cell / Quantum efficiency / Light-emitting diode / Gallium arsenide / Physics / Chemistry / Solar cells


Green Photonics Award Paper Simulations of solar cell absorption enhancement using resonant modes of a nanosphere array Jonathan Grandidier*a, Michael G. Decegliea, Dennis M. Callahana, Harry A. Atwaterab Thomas J. Wats
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Document Date: 2012-02-23 12:18:53


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File Size: 1,47 MB

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City

Pasadena / London / Wiley / /

Company

A. Atwaterab Thomas J. Watson Laboratories / Princeton University Press / Quantum Electronics / Imperial College Press / /

Country

United States / /

Currency

USD / /

Event

Reorganization / /

Facility

SPIE Digital Library / J. Kavli Nanoscience Institute / California Institute of Technology / /

IndustryTerm

3D finite-element device / carrier transport equations / carrier transport calculations / e- is / energy present / photon energy / finite-element device / semiconductor devices / photovoltaics applications / finite element device physics software / degraded carrier lifetimes / imperfect charge carrier collection / n-i-p device / input energy / element device / 3D finite element device / energy / /

Organization

California Institute of Technology / Energy Frontier Research Center / J. Kavli Nanoscience Institute / Princeton University / /

Person

Alexandre Freundlich / N. P. Hylton / V / Jean-Francois F. Guillemoles / Fig / Jonathan Grandidier / Raymond A. Weitekamp / Michael G. Decegliea / Daniel B. Turner-Evans / Dennis M. Callahana / /

Position

model / /

Product

2D FDTD / 3D FDTD / /

ProvinceOrState

New York / California / /

PublishedMedium

Advanced Materials / /

Technology

semiconductor / radiation / broadband / semiconductor devices / dielectric / Simulation / Device Technology / /

URL

http /

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