Gas sensing with mode-phase-difference photothermal spectroscopy assisted by a long period grating in a dual-mode negative-curvature hollow-core optical fiber

  • Zhao P
  • Ho H
  • Jin W
  • et al.
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Abstract

We demonstrate sensitive gas detection with mode-phase-difference photothermal spectroscopy assisted by a long period grating (LPG) inscribed on a dual-mode negative-curvature hollow-core fiber (NC-HCF). The LPG is inscribed using a pulsed C O 2 laser, which enables pump propagation in the fundamental L P 01 mode to achieve maximum photothermal phase modulation while exciting both the L P 01 and L P 11 modes at the probe wavelength to form a dual-mode interferometer for detection of the phase difference. With a 1533 nm pump and a 1620 nm probe, a noise equivalent concentration of ∼ 2.2 ppb acetylene is achieved with an 85-cm-long NC-HCF gas cell and 1 s lock-in time constant.

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Zhao, P., Ho, H. L., Jin, W., Fan, S., Gao, S., Wang, Y., & Wang, P. (2020). Gas sensing with mode-phase-difference photothermal spectroscopy assisted by a long period grating in a dual-mode negative-curvature hollow-core optical fiber. Optics Letters, 45(20), 5660. https://doi.org/10.1364/ol.404323

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