Expand this Topic clickable element to expand a topic
Skip to content
Optica Publishing Group
  • Journal of Lightwave Technology
  • Vol. 32,
  • Issue 22,
  • pp. 3791-3797
  • (2014)

Gamma-Ray Irradiation-Induced Optical Attenuation in Co/Fe Co-Doped Alumino-Silicate Optical Fiber for Dosimeter Application

Not Accessible

Your library or personal account may give you access

Abstract

Dose dependence of radiation-induced optical attenuation (RIA) at 1310 nm of the Co/Fe co-doped alumino-silicate optical fiber was investigated under gamma-ray irradiation at dose rates from 6.7 to 78.3 Gy/min. From the measured RIA, radiation dose sensitivity (ΔRIA/ΔDose) and rate of RIA change with irradiation time (ΔRIA/ΔTime) at the different dose rates were estimated. RIAs at various wavelengths (800 to 1600 nm) of the optical fiber were also measured and the RIA characteristics at 800 and 1310 nm under discrete gamma-ray irradiation were investigated. The measured RIA of the Co/Fe co-doped fiber showed very high dose sensitivity regardless of the dose rates and the ΔRIA/ΔTime was found to show linear response with respect to the dose rate. The significantly large RIA was attributed to Co, Fe, and Al-related defects in the fiber core which were formed by the irradiation, and it became larger at shorter wavelength. The high radiation dose sensitivity, linear response of the ΔRIA/ΔTime with respect to dose rate, and the high reproducibility of the dose dependence of RIA under the discrete irradiation clearly indicate that the Co/Fe co-doped fiber is able to provide highly accurate information of not only total accumulated dose but also dose rate of the radiation with irradiation time.

© 2014 IEEE

PDF Article
More Like This
Fiber-optic dosimeter based on radiation-induced attenuation in P-doped fiber: suppression of post-irradiation fading by using two working wavelengths in visible range

Alexander L. Tomashuk, Mikhail V. Grekov, Sergei A. Vasiliev, and Vyacheslav V. Svetukhin
Opt. Express 22(14) 16778-16783 (2014)

Gamma-ray radiation response at 1550 nm of fluorine-doped radiation hard single-mode optical fiber

Youngwoong Kim, Seongmin Ju, Seongmook Jeong, Seung Ho Lee, and Won-Taek Han
Opt. Express 24(4) 3910-3920 (2016)

Radiation-induced attenuation in aluminum- and aluminum-thulium-doped optical fibers

Antoine Gallet, Matthieu Caussanel, Hervé Duval, Kadar Mahamoud Djama, Stéphane Thil, Julien Eynard, Stéphane Grieu, Stanislaw Trzesien, Michèle Ude, and Bernard Dussardier
Appl. Opt. 62(16) E24-E31 (2023)

Cited By

You do not have subscription access to this journal. Cited by links are available to subscribers only. You may subscribe either as an Optica member, or as an authorized user of your institution.

Contact your librarian or system administrator
or
Login to access Optica Member Subscription

Select as filters


Select Topics Cancel
© Copyright 2024 | Optica Publishing Group. All rights reserved, including rights for text and data mining and training of artificial technologies or similar technologies.