<--- Back to Details
First PageDocument Content
Indium gallium arsenide / Superlattice / Spectroscopy / Spintronics / Refractive index / Chemistry / Physics / Matter
Date: 2004-07-26 11:51:47
Indium gallium arsenide
Superlattice
Spectroscopy
Spintronics
Refractive index
Chemistry
Physics
Matter

doi:[removed]j.spmi[removed]

Add to Reading List

Source URL: www.ece.rice.edu

Download Document from Source Website

File Size: 152,68 KB

Share Document on Facebook

Similar Documents

Chemistry / Semiconductor lasers / Optics / Physics / Quantum electronics / Quantum mechanics / Heat-assisted magnetic recording / Laser diode / Quantum dot laser / Quantum dot / Indium gallium arsenide / Quantum well laser

Extremely low room-temperature threshold current density diode lasers using InAs dots in In0.15Ga0.85As quantum well G.T. Liu, A. Stintz, H. Li, K.J. Malloy and L.F. Lester The lowest room-temperature threshold current d

DocID: 1qC9E - View Document

Chemistry / Matter / Emerging technologies / Nanomaterials / Graphene / Semiconductor devices / Monolayers / Potential applications of graphene / Indium gallium arsenide / Gallium arsenide / Nanowire / Quantum dot

Synthesis, assembly and applications of semiconductor nanomembranes

DocID: 1qy6t - View Document

Chemistry / Energy / Solar cells / Nature / Energy conversion / Semiconductor devices / Photovoltaics / Multi-junction solar cell / Gallium arsenide / Indium gallium phosphide / Indium gallium arsenide / ShockleyQueisser limit

LETTERS PUBLISHED ONLINE: 28 APRIL 2014 | DOI: NMAT3946 Printing-based assembly of quadruple-junction four-terminal microscale solar cells and their use in high-efficiency modules

DocID: 1qq5V - View Document

Optics / Semiconductor lasers / Physics / Electromagnetism / Quantum electronics / Heat-assisted magnetic recording / Laser diode / Laser / Indium gallium arsenide / Quantum dot / Quantum well / Light-emitting diode

High-performance GaInAs / GaAs quantum-dot lasers based on a single active layer. F.Schäfer,a) J.P.Reithmaier, and A. Forchel Technische Physik, Universität Würzburg, Am Hubland, DWürzburg , Germany (Received

DocID: 1qmtu - View Document

Crystal / Photonic-crystal fiber / Opticians / Guggenheim Fellows

CINT PublicationsY. Sun, S. F. Cheng, G. Chen, R. F. Hicks, J. G. Cederberg, and R. M. Biefeld, “The effect of antimony in the growth of indium arsenide quantum dots in gallium arsenide (001),” J. Appl. Ph

DocID: 1qe8S - View Document