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Birefringence sensitivity to temperature of polarization maintaining photonic crystal fibers

  • Beihang University

Research output: Contribution to journalArticlepeer-review

Abstract

In this paper, we investigate the birefringence of polarization maintaining photonic crystal fibers (PM-PCFs) under thermal effect. Modeling and simulation of PM-PCFs under thermal effect are conducted. Birefringence in a PM-PCF as a function of the temperature is measured experimentally. The experimental results are in agreement with theoretical calculation, and show that the relative temperature dependent birefringence coefficient of the PM-PCF, dΔn/dT/Δn, is 2.93×10 -5/°C, which is typically ∼35 times less than that of conventional panda fibers. The insensitivity of polarization properties in PM-PCFs to temperature is demonstrated. These findings have important benefits in fiber optic systems and sensors, especially in fiber optic gyroscopes (FOG) where it translates into a lower polarization error and thus a higher measurement precision.

Original languageEnglish
Pages (from-to)1829-1833
Number of pages5
JournalOptics and Laser Technology
Volume44
Issue number6
DOIs
StatePublished - Sep 2012

Keywords

  • Birefringence
  • Fiber-optic gyroscopes (FOG)
  • Photonic crystal fiber (PCF)

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