Circuit Quantum Electrodynamics cQED Hybrid Systems for Quanutm Technological Applications A Theoretical Study

dc.contributor.guideSarma, Amarendra Kumar
dc.coverage.spatial
dc.creator.researcherNongthombam, Roson
dc.date.accessioned2025-03-25T10:45:40Z
dc.date.available2025-03-25T10:45:40Z
dc.date.awarded2025
dc.date.completed2025
dc.date.registered2019
dc.description.abstractIn this thesis, we study various quantum phenomena and their applications in a hybrid system implemented on a circuit quantum electrodynamics (cQED) platform. cQED explores the interaction between nonlinear superconducting circuits functioning as artificial atoms and quantized electromagnetic fields in the microwave-frequency range. The artificial atom in these circuits is realized through a Josephson tunnel junction, formed by a thin insulating barrier at the interface between two superconductors. The non-linear properties of this junction transform the equally spaced energy levels of a simple LC harmonic oscillator into atomic-like energy levels that are unequally spaced. A notable feature of this artificial atom is its ability to tune the frequency of its energy levels by driving it with a microwave field.
dc.description.note
dc.format.accompanyingmaterialNone
dc.format.dimensions
dc.format.extent
dc.identifier.researcherid
dc.identifier.urihttp://hdl.handle.net/10603/629933
dc.languageEnglish
dc.publisher.institutionDEPARTMENT OF PHYSICS
dc.publisher.placeGuwahati
dc.publisher.universityIndian Institute of Technology Guwahati
dc.relation
dc.rightsself
dc.source.universityUniversity
dc.subject.keywordPhysical Sciences
dc.subject.keywordPhysics
dc.subject.keywordPhysics Applied
dc.titleCircuit Quantum Electrodynamics cQED Hybrid Systems for Quanutm Technological Applications A Theoretical Study
dc.title.alternative
dc.type.degreePh.D.

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