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Non-fluorescent nanoscopic monitoring of a single trapped nanoparticle via nonlinear point sources

Author

Listed:
  • Seung Ju Yoon

    (Korea Advanced Institute of Science and Technology (KAIST))

  • Jungmin Lee

    (Korea Advanced Institute of Science and Technology (KAIST))

  • Sangyoon Han

    (Korea Advanced Institute of Science and Technology (KAIST))

  • Chang-Kyu Kim

    (Korea Polytechnic University)

  • Chi Won Ahn

    (KAIST, National NanoFab Center (NNFC))

  • Myung-Ki Kim

    (Korea University)

  • Yong-Hee Lee

    (Korea Advanced Institute of Science and Technology (KAIST))

Abstract

Detection of single nanoparticles or molecules has often relied on fluorescent schemes. However, fluorescence detection approaches limit the range of investigable nanoparticles or molecules. Here, we propose and demonstrate a non-fluorescent nanoscopic trapping and monitoring platform that can trap a single sub-5-nm particle and monitor it with a pair of floating nonlinear point sources. The resonant photon funnelling into an extremely small volume of ~5 × 5 × 7 nm3 through the three-dimensionally tapered 5-nm-gap plasmonic nanoantenna enables the trapping of a 4-nm CdSe/ZnS quantum dot with low intensity of a 1560-nm continuous-wave laser, and the pumping of 1560-nm femtosecond laser pulses creates strong background-free second-harmonic point illumination sources at the two vertices of the nanoantenna. Under the stable trapping conditions, intermittent but intense nonlinear optical spikes are observed on top of the second-harmonic signal plateau, which is identified as the 3.0-Hz Kramers hopping of the quantum dot trapped in the 5-nm gap.

Suggested Citation

  • Seung Ju Yoon & Jungmin Lee & Sangyoon Han & Chang-Kyu Kim & Chi Won Ahn & Myung-Ki Kim & Yong-Hee Lee, 2018. "Non-fluorescent nanoscopic monitoring of a single trapped nanoparticle via nonlinear point sources," Nature Communications, Nature, vol. 9(1), pages 1-8, December.
  • Handle: RePEc:nat:natcom:v:9:y:2018:i:1:d:10.1038_s41467-018-04689-5
    DOI: 10.1038/s41467-018-04689-5
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