Expand this Topic clickable element to expand a topic
Skip to content
Optica Publishing Group
  • Journal of Lightwave Technology
  • Vol. 41,
  • Issue 13,
  • pp. 4389-4396
  • (2023)

The Impact of Gamma Irradiation on Optical Fibers Identified Using Long Period Gratings

Not Accessible

Your library or personal account may give you access

Abstract

This paper compares the impact of gamma irradiation on various optical fibers, where the evolution in their optical properties could be identified using long period gratings (LPG) there induced. The LPGs were fabricated in broad spectrum of commercially available single-mode optical fibers - from standard to unconventional ones - using the electric arc discharge method. The fused silica fiber material contained such dopant as Ge, F, B/Ge and P. The gamma exposure has been performed with a dose rate of 2.6 kGy/h for 20 h (a total dose of 52 kGy). Subsequently, the recovery effect was monitored during the following 48 h. The wavelength shift and power change of the LPG attenuation bands during irradiation were investigated in real time. Moreover, to identify the impact of gamma treatment on the fiber properties, the thermal response of the gratings was studied before and after the irradiation. Depending on the fiber, significant differences have been observed in the grating responses. The highest radiation-dependent resonance wavelength shift has been found for B/Ge fiber (∼10 nm at maximum dose). Moreover, for these LPGs no response saturation within the applied dose levels has been observed together with very low recovery effect, what differentiate these LPGs from the other tested in this experiment. Finally, concerning the changes in optical power at the resonance wavelength, the LPG induced in P-doped fiber has shown a strong irradiation-induced attenuation reaching 18 dB with a negligible recovery effect. The findings reported in this work are crucial for optical fiber and optical fiber sensors application in environments exposed to radiation.

PDF Article
More Like This
Effect of gamma-irradiation on the optical properties of bismuth-doped germanosilicate fibers

S. V. Firstov, V. F. Khopin, S. V. Alyshev, E. G. Firstova, K. E. Riumkin, M. A. Melkumov, A. M. Khegai, P. F. Kashaykin, A. N. Guryanov, and E. M. Dianov
Opt. Mater. Express 6(10) 3303-3308 (2016)

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)

Fabrication of long-period fiber gratings by use of focused ion-beam irradiation

M. L. von Bibra, A. Roberts, and J. Canning
Opt. Lett. 26(11) 765-767 (2001)

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.