Login / Signup

In situ tunable circular dichroism of flexible chiral metasurfaces composed of plasmonic nanorod trimers.

Hsiang-Ting LinYao-Yu HsuPi-Ju ChengWei-Ting WangShu-Wei ChangMin-Hsiung Shih
Published in: Nanoscale advances (2022)
The circularly polarized light source is one of the keys to chiral photonic circuits and systems. However, it is difficult to integrate conventional light-emitting devices with circular polarization converters directly into compact chip-scale photonic systems partly because of their bulky structures. In this study, in situ optical chirality tunable nanorod trimer metasurfaces consisting of two types of nanorod dimers are demonstrated and integrated with a flexible polydimethylsiloxane (PDMS) substrate. The optical chirality variations originating from the tunable asymmetricity of nanorod trimers under different stretching scenarios are evaluated. Through the processes, the gap distances between nanorods are varied, and the degree of circular polarization of the transmitted wave is controlled through the manipulation of localized surface plasmon resonance (LSPR) coupling. The results reveal the circular dichroism tunability and durability of fabricated chiral metasurfaces which can be important elements for chip-scale flexible optoelectronic integrated circuits for sensing, display and communication applications.
Keyphrases
  • light emitting
  • high speed
  • high resolution
  • capillary electrophoresis
  • energy transfer
  • ionic liquid
  • high throughput
  • circulating tumor cells
  • climate change
  • genome wide
  • single cell
  • gene expression
  • dna methylation