Acta Optica Sinica, Volume. 42, Issue 4, 0406002(2022)
Output Power of Erbium-Ytterbium Co-Doped Fiber Amplifier After High Temperature Aging
[1] Xu S H, Yang Z M, Liu T et al. An efficient compact 300 mW narrow-linewidth single frequency fiber laser at 1.5 microm[J]. Optics Express, 18, 1249-1254(2010).
[2] Bonfrate G, Vaninetti F, Negrisolo F. Single-frequency MOPA Er 3+ DBR fiber laser for WDM digital telecommunication systems[J]. IEEE Photonics Technology Letters, 10, 1109-1111(1998).
[3] Poulsen C V, Varming P, Pedersen J E et al. Applications of single frequency fiber lasers[C]∥2003 Conference on Lasers and Electro-Optics Europe (CLEO/Europe 2003) (IEEE Cat. No.03TH8666), June 22-27, 2003, Munich, Germany., 617(2003).
[4] Lin Z, Jiang T M, Cheng Y S et al. Study on Arrhenius relationship[J]. Electronic Product Reliability and Environmental Testing, 23, 12-14(2005).
[5] Yamada M, Shimizu M, Okayasu M et al. Temperature insensitive Er 3+-doped optical fibre amplifiers[J]. Electronics Letters, 26, 1649-1650(1990).
[6] Goktas H H, Yucel M. A fuzzy logic based device for the determination of temperature dependence of EDFAs[J]. Microwave and Optical Technology Letters, 50, 2331-2334(2008).
[7] Chen W T, Sha J J, Wang Y et al. Investigation of temperature influence on output performances of high-power cladding-pumped Er, Yb co-doped fiber laser[J]. Proceedings of SPIE, 8601, 86012A(2013).
[8] Wang H Y, Zhang Y T, Jin L F et al. Acceleration aging study of amplified spontaneous emission broadband source[J]. Chinese Journal of Lasers, 42, 0405003(2015).
[9] Tang X Y, Han Q, Song H L et al. Numerical investigation of the thermal effect on Yb-cavity-copumped Er/Yb codoped fiber amplifiers[J]. Applied Optics, 57, 1541-1547(2018).
[10] Yahel E, Hardy A. Modeling high-power Er 3+-Yb 3+ codoped fiber lasers[J]. Journal of Lightwave Technology, 21, 2044-2052(2003).
[11] Zhou B K, Gao Y Z, Chen T R et al[M]. Principle of laser(2014).
[12] Canat G, Mollier J C, Jaouën Y et al. Evidence of thermal effects in a high-power Er 3+-Yb 3+ fiber laser[J]. Optics Letters, 30, 3030-3032(2005).
[13] McCumber D E. Theory of phonon-terminated optical masers[J]. Physical Review, 134, A299-A306(1964).
[14] Zhou Y P, Zhao Y J, Zhang Y J[J]. Arrhenius equation and activation energy Journal of Shihezi University, 1995, 76-80.
[15] [15] BayleF, MettasA. Temperature acceleration models in reliability predictions: justification & improvements[C]∥2010 Proceedings-Annual Reliability and Maintainability Symposium (RAMS), January 25-28, 2010, San Jose, CA, USA. New York: IEEE Press, 2010: 1- 6.
[16] Bai X L, Sheng Q, Zhang H W et al. Influence of seed power and gain fiber temperature on output linewidth in single-frequency EYDFA[J]. Infrared and Laser Engineering, 47, 109-114(2018).
[17] Chen L M, Liu C, Hou J Y et al[J]. Mechanical reliability and life evaluation of optical fiber Study on Optical Communications, 2016, 22-24, 44.
Get Citation
Copy Citation Text
Kangyu Ren, Wei Shi, Yating Zhang, Jianquan Yao. Output Power of Erbium-Ytterbium Co-Doped Fiber Amplifier After High Temperature Aging[J]. Acta Optica Sinica, 2022, 42(4): 0406002
Category: Fiber Optics and Optical Communications
Received: Jul. 5, 2021
Accepted: Aug. 27, 2021
Published Online: Jan. 29, 2022
The Author Email: Zhang Yating (yating@tju.edu.cn), Yao Jianquan (jqyao@tju.edu.cn)