Monolithically Integrated C-Band Quantum Emitters on Foundry Silicon Photonics

Fuente: arXiv
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Main Authors: Pettit, Robert M., Deckoff-Jones, Skylar, Donis, Angela, Elias, Ana, Briscoe, Jayson, Leake, Gerald, Coleman, Daniel, Fanto, Michael, Sundaresh, Ananthesh, Gupta, Shobhit, Singh, Manish Kumar, Sullivan, Sean E.
Format: Preprint
Published: 2025
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author Pettit, Robert M.
Deckoff-Jones, Skylar
Donis, Angela
Elias, Ana
Briscoe, Jayson
Leake, Gerald
Coleman, Daniel
Fanto, Michael
Sundaresh, Ananthesh
Gupta, Shobhit
Singh, Manish Kumar
Sullivan, Sean E.
author_facet Pettit, Robert M.
Deckoff-Jones, Skylar
Donis, Angela
Elias, Ana
Briscoe, Jayson
Leake, Gerald
Coleman, Daniel
Fanto, Michael
Sundaresh, Ananthesh
Gupta, Shobhit
Singh, Manish Kumar
Sullivan, Sean E.
contents Solid-state spin-based quantum systems have emerged as popular platforms for quantum networking applications due to their optical interfaces, their long-lived quantum memories, and their natural compatibility with semiconductor manufacturing. Photonic crystal cavities are often used to enhance radiative emission; however, fabrication of the necessary subwavelength cavities is typically limited to small batch electron beam lithography. In this work, we demonstrate high quality factor, small mode volume nanobeam cavities fabricated on a scalable silicon photonic foundry platform. The foundry fabricated cavities are then interfaced with single erbium ions through backend deposition of TiO2 thin films lightly doped with erbium. Single ion lifetime measurements indicate Purcell enhancement up to about 500, thereby demonstrating a route toward manufacturable deterministic single photon sources in the telecom C-band.
format Preprint
id arxiv_https___arxiv_org_abs_2505_00224
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Monolithically Integrated C-Band Quantum Emitters on Foundry Silicon Photonics
Pettit, Robert M.
Deckoff-Jones, Skylar
Donis, Angela
Elias, Ana
Briscoe, Jayson
Leake, Gerald
Coleman, Daniel
Fanto, Michael
Sundaresh, Ananthesh
Gupta, Shobhit
Singh, Manish Kumar
Sullivan, Sean E.
Optics
Quantum Physics
Solid-state spin-based quantum systems have emerged as popular platforms for quantum networking applications due to their optical interfaces, their long-lived quantum memories, and their natural compatibility with semiconductor manufacturing. Photonic crystal cavities are often used to enhance radiative emission; however, fabrication of the necessary subwavelength cavities is typically limited to small batch electron beam lithography. In this work, we demonstrate high quality factor, small mode volume nanobeam cavities fabricated on a scalable silicon photonic foundry platform. The foundry fabricated cavities are then interfaced with single erbium ions through backend deposition of TiO2 thin films lightly doped with erbium. Single ion lifetime measurements indicate Purcell enhancement up to about 500, thereby demonstrating a route toward manufacturable deterministic single photon sources in the telecom C-band.
title Monolithically Integrated C-Band Quantum Emitters on Foundry Silicon Photonics
topic Optics
Quantum Physics
url https://arxiv.org/abs/2505.00224