Saha, SamprityFomra, DhruvOzgur, UmitAvrutin, VitalyNdukaife, Justus C.Kinsey, Nathaniel2023-02-132023-02-132022-12-191094-4087PubMed ID36558720http://hdl.handle.net/1803/17995To address the challenges of developing a scalable system of an on-chip integrated quantum emitter, we propose to leverage the loss in our hybrid plasmonic-photonic structure to simultaneously achieve Purcell enhancement as well as on-chip maneuvering of nanoscale emitter via optical trapping with guided excitation-emission routes. In this report, we have analyzed the feasibility of the functional goals of our proposed system in the metric of trapping strength (-8KBT), Purcell factor (>1000-), and collection efficiency (-10%). Once realized, the scopes of the proposed device can be advanced to develop a scalable platform for integrated quantum technology.en-US© 2022 Optica Publishing Group under the terms of the Optica Open Access Publishing AgreementOn-chip integrated quantum emitter with 'trap-enhance-guide': a simulation approachArticle10.1364/OE.477164