Electrostatic Control of Single InAs Quantum Dots Using InP Nanotemplates
This thesis focuses on pioneering a scalable route to fabricate quantum information devices based upon single InAs/InP quantum dots emitting in the telecommunications wavelength band around 1550 nm. Using metallic gates in combination with nanotemplate, site-selective epitaxy techniques, arrays of s...
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Language: | en |
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2012
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Online Access: | http://hdl.handle.net/10393/22758 |