[1] G CANAT, J C MOLLIER, J P BOUZINAC. Dynamics of high-power erbium-ytterbium fiber amplifiers. Journal of the Optical Society of America B-Optical Physics, 22, 2308-2318(2005).
[2] Qun HAN, Yunzhi YAO, Xiaoyun TANG. Highly efficient Er-Yb codoped double-clad fiber amplifer with an Yb-band resonant cavity. Laser Physics Letters, 14, 025105(2017).
[3] S GIRARD, B TORTECH, E REGNIER. Proton- and gamma-induced effects on erbium-doped optical fibers. IEEE Transactions on Nuclear Science, 54, 2426-2434(2007).
[4] B TORTECH, Y OUERDANE, S GIRARD. Radiation effects on Yb- and Er/Yb-doped optical fibers: A micro-luminescence study. Journal of Non-Crystalline Solids, 355, 1085-1088(2009).
[5] M LEZIUS, K PREDEHI, W STOWER. Radiation induced absorption in rare earth doped optical fibers. IEEE Transactions on Nuclear Science, 59, 425-433(2012).
[6] Jing MA, Mi LI, Liying TAN. Experimental investigation of radiation effect on erbium-ytterbium co-doped fiber amplifier for space optical communication in low-dose radiation environment. Optics Express, 17, 1085-1088(2009).
[7] Tingyun WANG, Fufei PANG, Xianglong ZENG. Specialty optical fibers and their componets. Journal of Shanghai University(Nature Science), 17, 360-367(2011).
[8] Baoluo YAN, Haifeng LIU, Bo LIU. EDFA anti-irradiation schemes for inter-satellite optical DPSK communication systems. IEEE Photonics Journal, 11, 4900711(2019).
[9] Chongyun SHAO, Chunlei YU, Lili HU. Radiation-resistant active fibers for space applications. Chinese Journal of Lasers, 47, 0500014(2020).
[10] A GUSAROV, M V UFFELEN, M HOTOLEANU. Radiation sensitivity of EDFAs based on highly Er-doped fibers. Journal of Lightwave Technology, 27, 1540-1545(2009).
[11] S GIRARD, A MORANA, A LADACI. Recent advances in radiation-hardened fiber-based technologies for space applications. Journal of Optics, 20, 093001(2018).
[12] Biao ZHAN, Shanhui XU, Shupei MO. Study on the relaxation oscillation suppression in a short-cavity single-frequency DBR fiber laser. Laser & Optoelectronics Progress, 9, 090602(2013).
[13] Huajie HE. Comparison of test methods for EDFA gain and noise figure. Guangdong Communication Technology, 19, 38-39(1999).
[14] Hongwei CHEN, Mengmeng TAO, Haichuan ZHAO. Experimental investigations on laser power characteristics influenced by Gamma-ray irradiated gain fiber. Chinese Journal of Lasers, 46, 1201005(2019).
[15] A LADACI, S GIRARD, L MESCIA. Radiation hardened high-power Er3+/Yb3+-codoped fiber amplifiers for free-space optical communications. Optics Letters, 43, 8457-8465(2018).
[16] A LADACI, S GIRARD, L MESCIA. X-rays, γ-rays, electrons and protons radiation-induced changes on the lifetimes of Er3+ and Yb3+ ions in silica-based optical fibers. Journal of Luminescence, 195, 402-407(2018).
[17] S GIRARD, M VIVONA, A LAURENT. Radiation hardening techniques for Er/Ybdoped optical fibers and amplifiers for space application. Optics Express, 20, 3049-3052(2012).
[18] M AUBRY, A LADACI, S GIRARD. Radiation effects on WDM and DWDM architectures of preamplifier and boost-amplifier. IEEE Transactions on Nuclear Science, 67, 278-283(2020).
[19] Yan WANG, Hongzhen LI, Ziqiang HAO. Research of anti-radiation technology for the EDFA systems in space environment. Laser & Optoelectronics Progress, 7, 070601(2013).
[20] Haiyan WANG, Yating ZHANG, Lufan JIN. Acceleration aging study of amplified spontaneous emission broadband source. Chinese Journal of Lasers, 42, 0405003(2015).
[21] Lufan JIN, Yating ZHANG, Haiyan WANG. Accelerated aging of InGaAs PIN photoelectric detectors. Chinese Journal of Lasers, 41, 1008002(2014).
[22] A KAMRA, F P WITEK, S MEYER. Spin hall noise. Physical Review, 90, 214419(2014).
[23] Jun HONG, Songhua ZHANG, Ze LUO. Measurement of relative intensity noise of laser based on microwave optical link. Scientia Sinica(Informationis), 45, 685-692(2015).
[24] U MASUD, M IKRAM. Calibration and stability of highly sensitive fibre based laser through relative intensity noise. Physica Scripta, 95, 055505(2020).
[25] Zhongcheng TIAN. Research on the influence of relative intensity noise on microwave photonic link performance. Semiconductor Optoelectronics, 37, 911-916(2016).
[26] Zonghua HU, Bo LIU, Haifeng LIU. Research on radiation-hard EDFA based on a novel erbium-doped fiber. Optical Communication Technology, 8, 5-8(2017).
[27] Pengwei ZHOU, Hekuo PENG, Yongchao CHEN. Independence between intensity and phase noise of superluminescent diodes in the low-frequency domain. Applied Optics, 56, 8275-8282(2017).
[28] Xun LIANG, Lina MA, Yongming HU. Research on relaxation oscillation in fiber laser with continuous pumping. Semiconductor Optoelectronics, 29, 815-819(2008).
[29] L MESCIA, S GIRARD. Optimization of the design of high power Er3+/Yb3+-codoped fiber amplifiers for space mission by means of particle swarm approach. IEEE Journal of Selected Topics in Quantum Electronics, 20, 3100108(2014).
[30] Yan LI, Keqin LI, Jing JIN. Influence of Erbium-doped fiber’s radiation effects on output characteristics of fiber source. Chinese Journal of Lasers, 44, 1206003(2017).