Intraband magnetoabsorption as a probing tool for the quantum dot charge
Author:
Publisher
AIP Publishing
Subject
Physics and Astronomy (miscellaneous)
Link
http://aip.scitation.org/doi/pdf/10.1063/1.2138354
Reference8 articles.
1. Quantum Information Processing Using Quantum Dot Spins and Cavity QED
2. In0.6Ga0.4As/GaAs quantum-dot infrared photodetector with operating temperature up to 260 K
3. Mode control by nanoengineering light emitters in spherical microcavities
4. Intraband absorption for InAs/GaAs quantum dot infrared photodetectors
5. Response spectra from mid- to far-infrared, polarization behaviors, and effects of electron numbers in quantum-dot photodetectors
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1. Refractory high-entropy nanoalloys with exceptional high-temperature stability and enhanced sinterability;Journal of Materials Science;2023-05
2. Characterization of spin-state tuning in thermally annealed semiconductor quantum dots;Physical Review B;2010-11-15
3. Anisotropic Confinement, Electronic Coupling and Strain Induced Effects Detected by Valence-Band Anisotropy in Self-Assembled Quantum Dots;Nanoscale Research Letters;2010-10-01
4. Far-infrared absorption of noncenter-of-mass modes and an optical sum rule in a few-electron quantum dot with Rashba spin-orbit coupling;Physical Review B;2007-04-23
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