4.6 Article

Optical coherence of diamond nitrogen-vacancy centers formed by ion implantation and annealing

期刊

PHYSICAL REVIEW B
卷 99, 期 16, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.99.161203

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资金

  1. AFOSR MURI [FA9550-14-1-0052]
  2. AFOSR [FA9550-16-1-0391]
  3. Netherlands Organization for Scientific Research (NWO) through a VICI grant
  4. Frontiers of Nanoscience program
  5. European Research Council through a Consolidator Grant (QNETWORK)
  6. European Research Council through a Synergy Grant (QC-LAB)
  7. Royal Netherlands Academy of Arts and Sciences (KNAW)
  8. Ammodo through an Ammodo science award
  9. STC Center for Integrated Quantum Materials (CIQM), NSF [DMR-1231319]
  10. Army Research Laboratory Center for Distributed Quantum Information (CDQI)
  11. Master Dynamic Limited
  12. NASA Space Technology Research Fellowship
  13. NSF Center for Ultracold Atoms (CUA)
  14. NSF EFRI-ACQUIRE program Scalable Quantum Communications with Error-Corrected Semiconductor Qubits
  15. AFOSR Quantum Memories MURI
  16. Netherlands Organization for Scientific Research (NWO) through a VIDI grant

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The advancement of quantum optical science and technology with solid-state emitters such as nitrogen-vacancy (NV) centers in diamond critically relies on the coherence of the emitters' optical transitions. A widely employed strategy to create NV centers at precisely controlled locations is nitrogen ion implantation followed by a high-temperature annealing process. We report on experimental data directly correlating the NV center optical coherence to the origin of the nitrogen atom. These studies reveal low-strain, narrow-optical-linewidth (<500 MHz) NV centers formed from naturally occurring N-14 atoms. In contrast, NV centers formed from implanted N-15 atoms exhibit significantly broadened optical transitions ( > 1 GHz) and higher strain. The data show that the poor optical coherence of the NV centers formed from implanted nitrogen is not due to an intrinsic effect related to the diamond or isotope. These results have immediate implications for the positioning accuracy of current NV center creation protocols and point to the need to further investigate the influence of lattice damage on the coherence of NV centers from implanted ions.

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