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March 27, 2026Nature Photonics5 citationsOpen Access

Single-atomic-ion detection with plasmon-enhanced whispering-gallery-mode microlasers

SKSamir Vartabi KashanianFVFrank Vollmer

Key Points

  • The study aims to enhance the sensitivity of whispering-gallery-mode microlasers for detecting single atomic ions in solution.
  • Developed a plasmon-enhanced whispering-gallery-mode microlaser using gold nanorods and ytterbium-doped silica microspheres.
  • Reduced effective mode volume by approximately 1,000-fold to amplify the local electromagnetic field.
  • Utilized self-heterodyne detection to monitor beatnote frequency shifts between split lasing modes.
  • Achieved peak sensitivity with beatnote shifts of 3.7 femtometers (fm) for zinc (Zn2+) ions and 7.2 fm for cadmium (Cd2+) ions.
  • Demonstrated capability for real-time monitoring of interactions at a single-atomic level.
  • Showcased potential applications in single-molecule and atomic-scale sensing, including in vivo studies.

Abstract

Abstract Whispering-gallery-mode microlasers have emerged as powerful tools for label-free biosensing, yet their sensitivity has been limited to detecting nanoparticles larger than 10 nm. Here we demonstrate a plasmon-enhanced whispering-gallery-mode microlaser capable of detecting single atomic ions in solution, achieving unprecedented sensitivity. By integrating gold nanorods onto ytterbium-doped silica microspheres, we reduce the effective mode volume by approximately 1,000-fold and enhance the local electromagnetic field, amplifying the signal-to-noise ratio. The self-heterodyne detection of beatnote frequency shifts between split lasing modes enables the real-time monitoring of transient and permanent interactions of zinc (Zn 2+ ) and cadmium (Cd 2+ ) ions with nanorod sensing sites. We report peak sensitivities with beatnote shifts of 3.7 fm for Zn 2+ and 7.2 fm for Cd 2+ , showcasing the potential of plasmon-enhanced whispering-gallery-mode microlasers for single-molecule and atomic-scale sensing applications, including in vivo probing.

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Cite This Study

Kashanian et al. (2026) studied this question.

synapsesocial.com/papers/69c620d515a0a509bde19722https://doi.org/10.1038/s41566-026-01882-7
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