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Integrated-photonics-based systems for polarization-gradient cooling of trapped ions

Sabrina M.Corsetti Dave Kharas Thomas Mahony Colin D.Bruzewicz Cheryl Sorace-Agaskar Robert McConnell Isaac L.Chuang John Chiaverini Jelena Notaros Ashton Hattori Ethan R.Clements Felix W.Knollmann Milica Notaros Reuel Swint Tal Sneh Patrick T.Callahan Gavin N.West

光:科学与应用(英文版)2026,Vol.15Issue(3):728-745,18.
光:科学与应用(英文版)2026,Vol.15Issue(3):728-745,18.DOI:10.1038/s41377-025-02094-4

Integrated-photonics-based systems for polarization-gradient cooling of trapped ions

Integrated-photonics-based systems for polarization-gradient cooling of trapped ions

Sabrina M.Corsetti 1Dave Kharas 2Thomas Mahony 2Colin D.Bruzewicz 2Cheryl Sorace-Agaskar 2Robert McConnell 2Isaac L.Chuang 1John Chiaverini 3Jelena Notaros 1Ashton Hattori 1Ethan R.Clements 1Felix W.Knollmann 1Milica Notaros 1Reuel Swint 2Tal Sneh 1Patrick T.Callahan 2Gavin N.West1

作者信息

  • 1. Research Laboratory of Electronics,Massachusetts Institute of Technology,Cambridge,MA 02139,USA
  • 2. Lincoln Laboratory,Massachusetts Institute of Technology,Lexington,MA 02421,USA
  • 3. Research Laboratory of Electronics,Massachusetts Institute of Technology,Cambridge,MA 02139,USA||Lincoln Laboratory,Massachusetts Institute of Technology,Lexington,MA 02421,USA
  • 折叠

摘要

引用本文复制引用

Sabrina M.Corsetti,Dave Kharas,Thomas Mahony,Colin D.Bruzewicz,Cheryl Sorace-Agaskar,Robert McConnell,Isaac L.Chuang,John Chiaverini,Jelena Notaros,Ashton Hattori,Ethan R.Clements,Felix W.Knollmann,Milica Notaros,Reuel Swint,Tal Sneh,Patrick T.Callahan,Gavin N.West..Integrated-photonics-based systems for polarization-gradient cooling of trapped ions[J].光:科学与应用(英文版),2026,15(3):728-745,18.

基金项目

The authors thank Daniel M.DeSantis for thoughtful discussions and the MIT Office of Research Computing and Data(ORCD)for providing high-performance-computing and consultation resources.This work is supported by a collaboration between the US DOE and other Agencies.This material is based upon work supported by the U.S.Department of Energy,Office of Science,National Quantum Information Science Research Centers,Quantum Systems Accelerator.Additional support is acknowledged from the NSF Quantum Leap Challenge Institute Hybrid Quantum Architectures and Networks(QLCI HQAN)(2016136),NSF Quantum Leap Challenge Institute Quantum Systems through Entangled Science and Engineering(QLCI Q-SEnSE)(2016244),MIT Center for Quantum Engineering(H98230-19-C-0292),NSF Graduate Research Fellowships Program(GRFP)(1122374),Department of Defense National Defense Science and Engineering Graduate(NDSEG)Fellowship,MIT Rolf G.Locher Endowed Fellowship,and MIT Frederick and Barbara Cronin Fellowship.This material is based upon work supported by the Department of Energy and the Under Secretary of Defense for Research and Engineering under Air Force Contract no.FA8702-15-D-0001.Any opinions,findings,conclusions,or recommendations expressed in this material are those of the author(s)and do not necessarily reflect the views of the Department of Energy or the Under Secretary of Defense for Research and Engineering. (ORCD)

光:科学与应用(英文版)

2095-5545

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