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Trapped Ion Quantum Computing

Robust diamond-embedded microwave antenna for optimizing quantum sensing using nitrogen-vacancy center ensembles

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Authors: Yuhang Guo, Jiaxin Zhao, Changfeng Weng, Shengran Lin, Yuanjie Yang, Wei Zhu, Liren Lou, Guanzhong Wang

Year

2023

Paper ID

13751

Status

Peer-reviewed

Abstract Read

~2 min

Abstract Words

111

Citations

6

Abstract

The nitrogen-vacancy (NV) color center in diamond has emerged as a promising candidate for quantum sensing. In this study, we propose a diamond-embedded metal antenna for magnetic detection utilizing NV center ensembles. Our approach involved employing nanofabrication and microwave plasma chemical vapor deposition techniques to fabricate the metal antenna and diamond epilayer. By directly embedding the antenna into the diamond, we effectively minimize external environmental interference, leading to improved device stability and reusability. Moreover, this integration enhances the device's compactness, making it highly suitable for on-chip quantum sensing applications. The innovative antenna design holds great potential for the development of future integrated quantum sensing devices based on NV centers in diamond.

Why This Paper Matters

  • This paper contributes to the Trapped-Ion Quantum Computing research area in the Quantum Articles archive.
  • It adds a 2023 reference point for readers tracking recent quantum research.
  • The nitrogen-vacancy (NV) color center in diamond has emerged as a promising candidate for quantum sensing.

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Current Paper #13751 #68474 Concentration-Free Quantum Kern... #68470 A fluxonium qubit-based hybrid ... #68469 Pitfalls when tackling the expo... #68467 Hong-Ou-Mandel interference of ...

External citation index: OpenAlex citation signal • updated 2026-06-11 02:14:35

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