4.8 Article

Optically sizing single atmospheric particulates with a 10-nm resolution using a strong evanescent field

Journal

LIGHT-SCIENCE & APPLICATIONS
Volume 7, Issue -, Pages -

Publisher

CHINESE ACAD SCIENCES, CHANGCHUN INST OPTICS FINE MECHANICS AND PHYSICS
DOI: 10.1038/lsa.2018.3

Keywords

air pollution; optical nanofiber; single particulates; size spectrometer

Categories

Funding

  1. NSFC [61435001, 61611540346, 11474011, 11654003]
  2. National Key R&D Program of China [2016YFA0301302]
  3. China Postdoctoral Science Foundation [2015M580909]

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Although an accurate evaluation of the distribution of ultrafine particulate matter in air is of utmost significance to public health, the usually used PM2.5 index fails to provide size distribution information. Here we demonstrate a low-profile and cavity-free size spectrometer for probing fine and ultrafine particulate matter by using the enhanced particle-perturbed scattering in strong optical evanescent fields of a nanofiber array. The unprecedented size resolution reaches 10 nm for detecting single 100-nm-diameter nanoparticles by employing uniform nanofibers and controlling the polarizations of the probe light. This size spectrometry was tested and used to retrieve the size distribution of particulate matter in the air of Beijing, yielding mass concentrations of nanoparticles, as a secondary exercise, consistent with the officially released data. This nanofiber-array probe shows potential for the full monitoring of air pollution and for studying early-stage haze evolution and can be further extended to explore nanoparticle interactions.

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