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Temperature-controllable beam splitter and optical filter based on filling liquid crystal into both ends of photonic crystal fibres

  • Jialu Wang
  • , Yongjun Liu*
  • , Lingli Zhang
  • , Yu Jiang
  • , Ji Ma
  • , Weimin Sun
  • *Corresponding author for this work
  • Harbin Engineering University
  • Kent State University

Research output: Contribution to journalArticlepeer-review

Abstract

We first presented an optical device of integrated beam splitter and filter based on the photonic crystal fibres (PCFs) with both ends of the air-holes filled with liquid crystal (LCs). All of the air-holes of one end of PCFs were filled with LCs and for the other end two air-holes near the solid core were selectively filled with LCs. As a beam splitter, when the two-filled-holes end was heated, the light power partly transmitted steadily from the central solid core into the two holes filled with LCs after the clearing point. As a filter, when the two-filled-holes end was heated, a peak near 760 nm of transmission spectrum got weak and another peak near 608 nm was maintained. While heating the full-filled end, the peak near 760 nm got strong and the peak near 608 nm got extremely weak. So this optical device could be applied to beam splitter and filter.

Original languageEnglish
Pages (from-to)61-65
Number of pages5
JournalLiquid Crystals
Volume43
Issue number1
DOIs
StatePublished - 2 Jan 2016

Keywords

  • Photonic crystal fibres
  • fibre sensor
  • liquid crystal
  • photonic bandgap

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