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Broadband all-fiber optical phase modulator based on photo-thermal effect in a gas-filled hollow-core fiber

Shoulin Jiang et al · Editorial Office of Opto-Electronic Journals Group, Institute of Optics and Electronics, CAS, China · 2023

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We report broadband all-fiber optical phase modulation based on the photo-thermal effect in a gas-filled hollow-core fiber. The phase modulation dynamics are studied by multi-physics simulation. A phase modulator is fabricated using a 5.6-cm-long anti-resonant hollow-core fiber with pure acetylene filling. It has a half-wave optical power of 289 mW at 100 kHz and an average insertion loss 0.6 dB over a broad wavelength range from 1450 to 1650 nm. The rise and fall time constants are 3.5 and 3.7 μs, respectively, 2–3 orders of magnitude better than the previously reported microfiber-based photo-thermal phase modulators. The gas-filled hollow-core waveguide configuration is promising for optical phase modulation from ultraviolet to mid-infrared which is challenging to achieve with solid optical fibers.

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APA 7

al, S. J. E. (2023). Broadband all-fiber optical phase modulator based on photo-thermal effect in a gas-filled hollow-core fiber. https://doi.org/10.29026/oea.2023.220085

MLA

al, Shoulin Jiang et. "Broadband all-fiber optical phase modulator based on photo-thermal effect in a gas-filled hollow-core fiber." 2023. https://doi.org/10.29026/oea.2023.220085.

Chicago

al, Shoulin Jiang et. 2023. "Broadband all-fiber optical phase modulator based on photo-thermal effect in a gas-filled hollow-core fiber.". https://doi.org/10.29026/oea.2023.220085.

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al, S. J. E. 2023, Broadband all-fiber optical phase modulator based on photo-thermal effect in a gas-filled hollow-core fiber, Editorial Office of Opto-Electronic Journals Group, Institute of Optics and Electronics, CAS, China, available at: https://doi.org/10.29026/oea.2023.220085 [Accessed 8 Aug. 2026].

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Title
Broadband all-fiber optical phase modulator based on photo-thermal effect in a gas-filled hollow-core fiber
Author / contributors
Shoulin Jiang et al
Publisher
Editorial Office of Opto-Electronic Journals Group, Institute of Optics and Electronics, CAS, China
Publication year
2023
ISSN
2096-4579
ISSN
2096-4579
Language
English

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