Next-Generation Solid-State Quantum Emitters

dc.contributor.authorSherlekar, Nachiket Sunil
dc.date.accessioned2019-01-31T20:59:15Z
dc.date.available2020-02-01T05:50:37Z
dc.date.issued2019-01-31
dc.date.submitted2019-01-29
dc.description.abstractThis thesis details two types of deterministic solid-state quantum emitters, an optically-driven quantum dot source in a tapered nanowire waveguide, and an electrically-driven source implemented by integrating a single-electron pump into a two-dimensional p-n junction. A finite-difference time-domain model of the optically-driven nanowire quantum dot source yielded optimized architectural parameters required to obtain a high transmission efficiency and a Gaussian far-field emission profile. An additional model of an electrically-gated nanowire source examined the effect of the surrounding structures on the emission properties of the source. A successfully working prototype p-n junction device as a precursor to the electrically-driven quantum emitter was implemented by simultaneously inducing positive and negative two-dimensional carrier gases in an undoped semiconductor heterostructure. This device, fabricated in-house, offers a path forward in the development of a new class of bright, deterministic sources of single- and entangled-photons.en
dc.identifier.urihttp://hdl.handle.net/10012/14453
dc.language.isoenen
dc.pendingfalse
dc.publisherUniversity of Waterlooen
dc.subjectsingle photon sourceen
dc.subjectnanophotonicsen
dc.subjectentanglementen
dc.subjectquantum doten
dc.subjectnanowireen
dc.subjectp-n junctionen
dc.subjectsimulationen
dc.subjectfabricationen
dc.subject.lcshNanophotonicsen
dc.subject.lcshQuantum entanglementen
dc.subject.lcshQuantum dotsen
dc.subject.lcshNanowiresen
dc.subject.lcshQuantum opticsen
dc.titleNext-Generation Solid-State Quantum Emittersen
dc.typeMaster Thesisen
uws-etd.degreeMaster of Applied Scienceen
uws-etd.degree.departmentElectrical and Computer Engineeringen
uws-etd.degree.disciplineElectrical and Computer Engineering (Quantum Information)en
uws-etd.degree.grantorUniversity of Waterlooen
uws-etd.embargo.terms1 yearen
uws.contributor.advisorReimer, Michael Andrew
uws.contributor.affiliation1Faculty of Engineeringen
uws.peerReviewStatusUnrevieweden
uws.published.cityWaterlooen
uws.published.countryCanadaen
uws.published.provinceOntarioen
uws.scholarLevelGraduateen
uws.typeOfResourceTexten

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