Literature DB >> 29131963

Hybrid Integration of Solid-State Quantum Emitters on a Silicon Photonic Chip.

Je-Hyung Kim1,2, Shahriar Aghaeimeibodi1, Christopher J K Richardson3, Richard P Leavitt3, Dirk Englund4, Edo Waks1,5.   

Abstract

Scalable quantum photonic systems require efficient single photon sources coupled to integrated photonic devices. Solid-state quantum emitters can generate single photons with high efficiency, while silicon photonic circuits can manipulate them in an integrated device structure. Combining these two material platforms could, therefore, significantly increase the complexity of integrated quantum photonic devices. Here, we demonstrate hybrid integration of solid-state quantum emitters to a silicon photonic device. We develop a pick-and-place technique that can position epitaxially grown InAs/InP quantum dots emitting at telecom wavelengths on a silicon photonic chip deterministically with nanoscale precision. We employ an adiabatic tapering approach to transfer the emission from the quantum dots to the waveguide with high efficiency. We also incorporate an on-chip silicon-photonic beamsplitter to perform a Hanbury-Brown and Twiss measurement. Our approach could enable integration of precharacterized III-V quantum photonic devices into large-scale photonic structures to enable complex devices composed of many emitters and photons.

Entities:  

Keywords:  Silicon quantum photonics; hybrid integration; quantum dots; single photons

Year:  2017        PMID: 29131963     DOI: 10.1021/acs.nanolett.7b03220

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


  8 in total

1.  Large-scale integration of artificial atoms in hybrid photonic circuits.

Authors:  Noel H Wan; Tsung-Ju Lu; Kevin C Chen; Michael P Walsh; Matthew E Trusheim; Lorenzo De Santis; Eric A Bersin; Isaac B Harris; Sara L Mouradian; Ian R Christen; Edward S Bielejec; Dirk Englund
Journal:  Nature       Date:  2020-07-08       Impact factor: 49.962

2.  Indistinguishable Photons from Deterministically Integrated Single Quantum Dots in Heterogeneous GaAs/Si3N4 Quantum Photonic Circuits.

Authors:  Peter Schnauber; Anshuman Singh; Johannes Schall; Suk In Park; Jin Dong Song; Sven Rodt; Kartik Srinivasan; Stephan Reitzenstein; Marcelo Davanco
Journal:  Nano Lett       Date:  2019-09-13       Impact factor: 11.189

3.  Recent advances in infrared imagers: toward thermodynamic and quantum limits of photon sensitivity.

Authors:  Simone Bianconi; Hooman Mohseni
Journal:  Rep Prog Phys       Date:  2020-02-04

4.  Strain-Tunable Quantum Integrated Photonics.

Authors:  Ali W Elshaari; Efe Büyüközer; Iman Esmaeil Zadeh; Thomas Lettner; Peng Zhao; Eva Schöll; Samuel Gyger; Michael E Reimer; Dan Dalacu; Philip J Poole; Klaus D Jöns; Val Zwiller
Journal:  Nano Lett       Date:  2018-11-30       Impact factor: 11.189

5.  Inverse-designed diamond photonics.

Authors:  Constantin Dory; Dries Vercruysse; Ki Youl Yang; Neil V Sapra; Alison E Rugar; Shuo Sun; Daniil M Lukin; Alexander Y Piggott; Jingyuan L Zhang; Marina Radulaski; Konstantinos G Lagoudakis; Logan Su; Jelena Vučković
Journal:  Nat Commun       Date:  2019-07-25       Impact factor: 14.919

6.  Integration of single photon emitters in 2D layered materials with a silicon nitride photonic chip.

Authors:  Frédéric Peyskens; Chitraleema Chakraborty; Muhammad Muneeb; Dries Van Thourhout; Dirk Englund
Journal:  Nat Commun       Date:  2019-09-30       Impact factor: 14.919

Review 7.  Quantum nanophotonics with group IV defects in diamond.

Authors:  Carlo Bradac; Weibo Gao; Jacopo Forneris; Matthew E Trusheim; Igor Aharonovich
Journal:  Nat Commun       Date:  2019-12-09       Impact factor: 14.919

8.  Bright Quantum Dot Single-Photon Emitters at Telecom Bands Heterogeneously Integrated on Si.

Authors:  Paweł Holewa; Aurimas Sakanas; Ugur M Gür; Paweł Mrowiński; Alexander Huck; Bi-Ying Wang; Anna Musiał; Kresten Yvind; Niels Gregersen; Marcin Syperek; Elizaveta Semenova
Journal:  ACS Photonics       Date:  2022-06-22       Impact factor: 7.077

  8 in total

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