Manipulation of quantum emitters using optical nanofiber tips

dc.contributor.guideRamachandrarao, Yalla
dc.coverage.spatial
dc.creator.researcherResmi, M.
dc.date.accessioned2025-05-20T05:04:25Z
dc.date.available2025-05-20T05:04:25Z
dc.date.awarded2025
dc.date.completed2024
dc.date.registered2019
dc.description.abstractThe crucial aspect of quantum information science is the efficient coupling of single newlinephotons from a single quantum emitter into a single-mode fiber for a quantum newlinenetwork. Recently, fiber-based platforms such as optical nanofibers (ONFs) and newlineoptical nanofiber tips (ONFTs) have emerged as promising candidates for the newlineefficient coupling of single photons. Despite extensive experimental research on newlinecoupling single photons into guided modes of the ONF, no experimental studies newlinehave been conducted using the ONFT for this purpose so far. ONFTs are vacuumclad newlinesilica fibers with sub-wavelength diameters at one edge. Due to the strong newlineconfinement of the electromagnetic field at the tip, the ONFT can significantly newlinemodify the spontaneous emission of the quantum emitter into guided modes of newlinea single-mode fiber. In addition to coupling, a technology by which information newlinecan be readily encoded into the photonic degrees of freedom for exchange between newlinedistant quantum nodes is crucial. Photon degrees of freedom are solely associated newlinewith their quantum properties, and polarization is a significant property of the newlinephoton. The polarization characteristics of fluorescence photons from a quantum newlineemitter coupled to an ONFT have not been investigated. This thesis presents newlinedetailed simulations and systematic experiments for efficiently coupling fluorescence newlinephotons from quantum emitters into guided modes of ONFTs and their newlinepolarization response. newlineFirst, I perform numerical simulations to determine coupling efficiency (and#951;) newlinefor the ONFT and a single dipole source (SDS) system. For the radially oriented newlineSDS at the center of the facet of the ONFT, the maximum and#951;-value of 44% is newlinefound for the emission wavelength at 620 nm. Additionally, the SDS position newlinedependence in transverse directions on the facet of the ONFT in view of keeping newlineexperimental ambiguities is investigated. It is found that the SDS position in newlinetransverse directions on the facet of the ONFT does not affect the and#951;-value significantly, newlineminimizing experimental ambiguities. The polariz
dc.description.note
dc.format.accompanyingmaterialNone
dc.format.dimensions
dc.format.extent153 p.
dc.identifier.researcherid
dc.identifier.urihttp://hdl.handle.net/10603/640174
dc.languageEnglish
dc.publisher.institutionSchool of Physics
dc.publisher.placeHyderabad
dc.publisher.universityUniversity of Hyderabad
dc.relation
dc.rightsuniversity
dc.source.universityUniversity
dc.subject.keywordPhysical Sciences
dc.subject.keywordPhysics
dc.subject.keywordPhysics Applied
dc.titleManipulation of quantum emitters using optical nanofiber tips
dc.title.alternative
dc.type.degreePh.D.

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