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Laser photonic nanojets triggered thermoplasmonic micro/nanofabrication of polymer materials for enhanced resolution

  • Yahya Elkarkri
  • , Xiaolai Li
  • , Binglin Zeng
  • , Zhaoxin Lian
  • , Ji Zhou
  • , Yuliang Wang*
  • *Corresponding author for this work
  • Beihang University

Research output: Contribution to journalArticlepeer-review

Abstract

Micro/nanofabrication of polymer materials is of interest for micro/nanofluidic systems. Due to the optical diffraction limit, it remains a challenge to achieve nanoscale resolution fabrication using an ordinary continuous-wave laser system. In this study, we therefore propose a laser photonic nanojet-based micro/nanofabrication method for polymer materials using a low-power and low-cost continuous-wave laser. The photonic nanojets were produced using glass microspheres. Moreover, a thermoplasmonic effect was employed by depositing a gold layer beneath the polymer films. By applying the photonic nanojet triggered thermoplasmonics, submicrometer surface structures, as well as their arrays, were fabricated with a laser power threshold value down to 10 mW. The influences of the microsphere diameters, and thicknesses of gold layers and polymer films on the fabricated microstructures were systematically investigated, which aligns well with the finite-difference time-domain simulation results.

Original languageEnglish
Article number145301
JournalNanotechnology
Volume32
Issue number14
DOIs
StatePublished - 2 Apr 2021

Keywords

  • Colloidal probes
  • Direct laser writing
  • Micro/nanofabrication
  • Photonic nanojets
  • Thermoplasmonics

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