Title :
Analytical Model for Broadband Thulium-Bismuth-Doped Fiber Amplifier
Author :
Fatehi, Hossein ; Emami, Siamak Dawazdah ; Zarifi, Atiyeh ; Zahedi, Fatemeh Zahra ; Mirnia, Seyed Edriss ; Zarei, Arman ; Ahmad, Harith ; Harun, Sulaiman Wadi
Author_Institution :
Dept. of Electr. Eng., Univ. of Malaya, Kuala Lumpur, Malaysia
Abstract :
Due to the tremendous growth in applications for fiber laser in medical science, sensor solution, and light detection and ranging system at 1.8 to 2-μm region, more research efforts have been directed toward developing highly efficient broadband fiber amplifiers in this range. In order to amplify this region, Thulium-Bismuth-doped fiber amplifier (TBDFA) is proposed in conjunction with 800-nm pumping. Optimal Thulium ion concentration of 4.17 × 1026 ion/m3 and Bismuth ion concentration of 2.08 × 1026 ion/m3 together with low phonon energy of germanate glass lead to the highest energy transfer rates. Effective energy transfer mechanism from Bismuth to Thulium in addition to the cross relaxation process between Thulium ions results in higher amplification, efficiency, and super broadband amplification in TBDFA. We analytically solve the rate equations of TBDFA including the effect of energy transfer in order to calculate the broadband amplifier gain.
Keywords :
bismuth; optical fibre amplifiers; thulium; bismuth ion concentration; broadband thulium-bismuth-doped fiber amplifier; cross relaxation process; energy transfer mechanism; fiber laser; germanate glass; highest energy transfer rates; highly efficient broadband fiber amplifiers; light detection; medical science; optimal thulium ion concentration; phonon energy; ranging system; rate equations; sensor solution; super broadband amplification; wavelength 1.8 mum to 2 mum; wavelength 800 nm; Absorption; Bismuth; Energy exchange; Equations; Ions; Mathematical model; Optical fiber amplifiers; 2-$mu{rm m}$ regions; Thulium-Bismuth; energy transfer; optical amplifier;
Journal_Title :
Quantum Electronics, IEEE Journal of
DOI :
10.1109/JQE.2012.2199739