Literature DB >> 30251868

Deterministic Positioning of Colloidal Quantum Dots on Silicon Nitride Nanobeam Cavities.

Yueyang Chen1, Albert Ryou1, Max R Friedfeld2, Taylor Fryett1, James Whitehead1, Brandi M Cossairt2, Arka Majumdar1,3.   

Abstract

Engineering an array of precisely located cavity-coupled active media poses a major experimental challenge in the field of hybrid integrated photonics. We deterministically position solution-processed colloidal quantum dots (QDs) on high quality (Q)-factor silicon nitride nanobeam cavities and demonstrate light-matter coupling. By lithographically defining a window on top of an encapsulated cavity that is cladded in a polymer resist, and spin coating the QD solution, we can precisely control the placement of the QDs, which subsequently couple to the cavity. We show rudimentary control of the number of QDs coupled to the cavity by modifying the size of the window. Furthermore, we demonstrate Purcell enhancement and saturable photoluminescence in this QD-cavity platform. Finally, we deterministically position QDs on a photonic molecule and observe QD-coupled cavity supermodes. Our results pave the way for precisely controlling the number of QDs coupled to a cavity by engineering the window size, the QD dimension, and the solution chemistry and will allow advanced studies in cavity enhanced single photon emission, ultralow power nonlinear optics, and quantum many-body simulations with interacting photons.

Entities:  

Keywords:  Photonic crystal cavity; colloidal quantum dots; hybrid integrated photonics; light-matter interaction

Year:  2018        PMID: 30251868     DOI: 10.1021/acs.nanolett.8b02764

Source DB:  PubMed          Journal:  Nano Lett        ISSN: 1530-6984            Impact factor:   11.189


  1 in total

1.  High-Q asymmetrically cladded silicon nitride 1D photonic crystals cavities and hybrid external cavity lasers for sensing in air and liquids.

Authors:  Simone Iadanza; Jesus Hernan Mendoza-Castro; Taynara Oliveira; Sharon M Butler; Alessio Tedesco; Giuseppe Giannino; Bernhard Lendl; Marco Grande; Liam O'Faolain
Journal:  Nanophotonics       Date:  2022-08-10       Impact factor: 7.923

  1 in total

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