Chinese Journal of Lasers, Volume. 50, Issue 5, 0501003(2023)
Research on Simulation Method for FM‑EDFAs by Effective Erbium Doping Concentration
[1] Essiambre R J, Kramer G, Winzer P J et al. Capacity limits of optical fiber networks[J]. Journal of Lightwave Technology, 28, 662-701(2010).
[2] Tu J J, Li Z H. Review of space division multiplexing fibers[J]. Acta Optica Sinica, 41, 0106003(2021).
[3] Sillard P, Bigot-Astruc M, Molin D. Few-mode fibers for mode-division-multiplexed systems[J]. Journal of Lightwave Technology, 32, 2824-2829(2014).
[4] Guo H M, Wu B J, Jiang X R et al. Detection method of mode power based on photonic lantern[J]. Acta Optica Sinica, 42, 0106003(2022).
[5] Pei L, Li Z Q, Wang J S et al. Review on gain equalization technology of fiber amplifier using space division multiplexing[J]. Acta Optica Sinica, 41, 0106001(2021).
[6] Ono H, Hosokawa T, Ichii K et al. Improvement of differential modal gain in few-mode fibre amplifier by employing ring-core erbium-doped fibre[J]. Electronics Letters, 51, 172-173(2015).
[7] Bai N, Ip E, Wang T et al. Multimode fiber amplifier with tunable modal gain using a reconfigurable multimode pump[J]. Optics Express, 19, 16601-16611(2011).
[8] Wang W S, Ning T G, Pei L et al. Gain equalization of few-mode fiber amplifier based on genetic algorithm[J]. Acta Optica Sinica, 41, 0906001(2021).
[9] Ruan J R, Pei L, Zheng J J et al. Gain equalization of 4-mode erbium-doped fiber amplifier based on cladding pump[J]. Acta Optica Sinica, 42, 0406001(2022).
[10] Genevaux P, Simonneau C, Le Cocq G et al. Amplification of 5 modes carrying each 100 Gb/s with a few mode EDFA[C], Tu3C.5(2015).
[11] Jung Y, Kang Q Y, Sahu J K et al. Reconfigurable modal gain control of a few-mode EDFA supporting six spatial modes[J]. IEEE Photonics Technology Letters, 26, 1100-1103(2014).
[12] Wang N, Kim I, Vassilieva O et al. Low-crosstalk few-mode EDFA for single-mode fiber trunk lines and networks[C](2019).
[13] Lei C M, Feng H L, Messaddeq Y et al. Investigation of bi-directionally, dual-wavelength pumped extended L-band EDFAs[J]. IEEE Photonics Technology Letters, 32, 1227-1230(2020).
[14] Jiang X R, Wu B J, Xie Y Q et al. A semi-analytic method for FM-EDFA intensity model[J]. Optical Fiber Technology, 64, 102546(2021).
[15] Chen X W, Wu B J, Xie Y Q et al. Analytical method for few-mode erbium doped fiber amplifiers[J]. Laser Physics Letters, 17, 035102(2020).
[16] Xu Y, Wu B J, Jiang X R et al. Experimental measurement of absorption coefficients for effective erbium-doping concentration to optimize few-mode erbium-doped fiber amplifiers with low differential mode gain[J]. Photonics, 8, 185(2021).
[17] Srivastava A K, Sun Y, Zyskind J L et al. EDFA transient response to channel loss in WDM transmission system[J]. IEEE Photonics Technology Letters, 9, 386-388(1997).
[18] Ho K P, Kahn J M. Mode coupling and its impact on spatially multiplexed systems[M]. Kaminow I P, Li T, Willner A E. Optical fiber telecommunications, 491-568(2013).
[19] Wu B J, Qiu K[M]. Fiber-optical information processing principles and technology, 173-180(2013).
[20] Sleiffer V A J M, Leoni P, Jung Y et al. 20 × 960-Gb/s MDM-DP-32QAM transmission over 60 km FMF with inline MM-EDFA[C](2013).
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Yan Xu, Baojian Wu, Xinrui Jiang, Haomiao Guo, Feng Wen. Research on Simulation Method for FM‑EDFAs by Effective Erbium Doping Concentration[J]. Chinese Journal of Lasers, 2023, 50(5): 0501003
Category: laser devices and laser physics
Received: Feb. 23, 2022
Accepted: Apr. 20, 2022
Published Online: Feb. 28, 2023
The Author Email: Wu Baojian (bjwu@uestc.edu.cn)