Daedalus

Results: 305



#Item
151Energy 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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Source URL: daedalus.caltech.edu

Language: English - Date: 2013-09-10 11:45:07
152Nanomaterials / Energy conversion / Emerging technologies / Vapor–liquid–solid method / Nanowire / Solar cell / Carbon nanotube / Polydimethylsiloxane / Wire / Chemistry / Technology / Nanoelectronics

www.advmat.de By Katherine E. Plass, Michael A. Filler, Joshua M. Spurgeon, Brendan M. Kayes, Stephen Maldonado, Bruce S. Brunschwig, Harry A. Atwater,* and Nathan S. Lewis* Wafer-based single-crystalline inorganic semi

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Source URL: daedalus.caltech.edu

Language: English - Date: 2012-11-06 14:23:34
153Energy conversion / Compound semiconductors / Inorganic compounds / Gallium arsenide / Multijunction photovoltaic cell / Photovoltaics / Light-emitting diode / Plasmonic solar cell / Thin film solar cell / Chemistry / Solar cells / Semiconductor devices

This article has been accepted for inclusion in a future issue of this journal. Content is final as presented, with the exception of pagination. IEEE JOURNAL OF PHOTOVOLTAICS 1 Gallium Arsenide Solar Cell Absorption

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Source URL: daedalus.caltech.edu

Language: English - Date: 2012-02-01 19:34:27
154Condensed matter physics / Electrical phenomena / Ceramic materials / Optics / Barium titanate / Diffraction / Piezoelectricity / Double-slit experiment / Ferroelectricity / Physics / Electromagnetism / Wave mechanics

Subscriber access provided by Caltech Library Services Letter Electrooptic Modulation in Thin Film Barium Titanate Plasmonic Interferometers

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Source URL: daedalus.caltech.edu

Language: English - Date: 2014-01-27 17:42:16
155Semiconductor devices / Nitrides / Inorganic compounds / Multijunction photovoltaic cell / Indium gallium arsenide / Band gap / Gallium arsenide / Indium gallium phosphide / Heterojunction / Chemistry / Solar cells / Energy conversion

APPLIED PHYSICS LETTERS 98, 093502 共2011兲 Wide-band-gap InAlAs solar cell for an alternative multijunction approach Marina S. Leite,1,a兲 Robyn L. Woo,2 William D. Hong,2 Daniel C. Law,2 and Harry A. Atwater1 1

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Source URL: daedalus.caltech.edu

Language: English - Date: 2011-03-25 11:58:32
156Energy conversion / Semiconductor devices / Multijunction photovoltaic cell / Gallium arsenide / Indium gallium arsenide / Solar panel / P–n junction / Photovoltaics / Indium gallium phosphide / Chemistry / Solar cells / Energy

p-n Junction Heterostructure Device Physics Model of a Four Junction Solar Cell Melissa J. Griggs*, Brendan M. Kayes, and Harry A. Atwater California Institute of Technology, Thomas J. Watson, Sr. Laboratories of Applied

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Source URL: daedalus.caltech.edu

Language: English - Date: 2006-11-13 12:58:04
157Energy conversion / Technology / Solar cells / Optics / Photovoltaics / Shockley–Queisser limit / Multijunction photovoltaic cell / Radiative forcing / Quantum efficiency / Physics / Semiconductor devices / Energy

Reply: On the thermodynamics of light trapping in solar cells

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Source URL: daedalus.caltech.edu

Language: English - Date: 2014-06-23 13:21:38
158Technology / Photoelectrochemistry / Solar cells / Materials science / Electrodes / Reference electrode / Nanowire / Wire / Photoelectrochemical cell / Energy / Electromagnetism / Energy conversion

Energy-Conversion Properties of Vapor-Liquid-Solid−Grown Silicon Wire-Array Photocathodes Shannon W. Boettcher et al. Science 327, [removed]); DOI: [removed]science[removed]

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Source URL: daedalus.caltech.edu

Language: English - Date: 2012-11-06 13:29:49
159Materials science / Condensed matter physics / Electrical phenomena / Transducers / Thin film deposition / Piezoresponse force microscopy / Piezoelectricity / Ferroelectricity / Microelectromechanical systems / Electromagnetism / Physics / Semiconductor device fabrication

APPLIED PHYSICS LETTERS VOLUME 85, NUMBER 3 19 JULY 2004

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Source URL: daedalus.caltech.edu

Language: English - Date: 2006-11-26 20:31:09
160Materials science / Thin film deposition / Plasma processing / Semiconductor devices / Nitrides / Silicon nitride / Chemical vapor deposition / Solar cell / Plasma-enhanced chemical vapor deposition / Chemistry / Technology / Semiconductor device fabrication

Thin Solid Films[removed]–40 Hot-wire chemical vapor deposition of high hydrogen content silicon nitride for solar cell passivation and anti-reflection coating applications J.K. Holta,*, D.G. Goodwina, A.M. Gabor

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Source URL: daedalus.caltech.edu

Language: English - Date: 2007-07-14 19:05:03
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