45°-TFG based in-fiber polarizer at 800nm by UV inscription

Adedotun Adebayo*, Zhijun Yan, Lin Zhang, David Robinson

*Corresponding author for this work

Research output: Chapter in Book/Report/Conference proceedingConference publication

Abstract

We show in-fiber polarizers at 800nm range with polarization extinction ratio (PER) up to 37dB, fabricated by UV-inscribing grating structures tilted at 45° in standard single mode fiber. The results show that the PER of such polarizers increases linearly with the grating length.

Original languageEnglish
Title of host publicationAsia Communications and Photonics conference 2012
PublisherOptical Society of America
Number of pages3
ISBN (Print)978-1-55752-957-2, 978-1-4673-6274-0
Publication statusPublished - 2012
EventAsia Communications and Photonics conference 2012 - Guangzhou, China
Duration: 7 Nov 201210 Nov 2012

Publication series

NameOSA technical digest
PublisherOptical Society of America

Conference

ConferenceAsia Communications and Photonics conference 2012
Abbreviated titleACP 2012
CountryChina
CityGuangzhou
Period7/11/1210/11/12

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  • Research Output

    • 2 Conference publication

    Analysis of carrier phase extraction methods in 112-Gbit/s NRZ-PDM-QPSK coherent transmission system

    Xu, T., Jacobsen, G., Popov, S., Li, J., Sergeyev, S. & Zhang, Y., 2012, Asia Communications and Photonics conference 2012. Optical Society of America, 3 p. paper AS1C.2. (OSA technical digest).

    Research output: Chapter in Book/Report/Conference proceedingConference publication

  • Influence of digital dispersion equalization on phase noise enhancement in coherent optical system

    Xu, T., Jacobsen, G., Popov, S., Li, J., Sergeyev, S. & Zhang, Y., 2012, Asia Communications and Photonics conference 2012. Optical Society of America, paper AS1C.3. (OSA technical digest).

    Research output: Chapter in Book/Report/Conference proceedingConference publication

  • Cite this

    Adebayo, A., Yan, Z., Zhang, L., & Robinson, D. (2012). 45°-TFG based in-fiber polarizer at 800nm by UV inscription. In Asia Communications and Photonics conference 2012 [ATh2A.4] (OSA technical digest). Optical Society of America.