Chinese Journal of Lasers, Volume. 41, Issue 6, 606001(2014)
Yb3+/Al3+ Co-Doped Silica Glass Prepared by Melting Technology Based on High-Frequency Plasma
[1] [1] Zheng Chao, Zhang Haitao, Yan Ping, et al.. Low repetition rate broadband high energy and peak power nanosecond pulsed Yb-doped fiber amplifier[J]. Optics & Laser Technology, 2013, 49: 284-287.
[2] [2] Wei Tao, Tan Zhiying, Li Jianfeng, et al.. Theoretical and experimental study of the pump pulse width optimization of the Yb-doped fiber amplifier[J]. Optik, 2013, 124(16): 2459-2462.
[3] [3] C Zheng, H T Zhang, W Y Cheng, et al.. 11-mJ pulse energy wideband Yb-doped fiber laser[J]. Opt Commun, 2012, 285(17): 3623-3626.
[4] [4] C Larsen, M Giesberts, S Nyga, et al.. Gain-switched all-fiber laser with narrow bandwidth[J]. Optics Express, 2013, 21(10): 12302-12308.
[5] [5] J Le Person, V Nazabal, R Balda, et al.. Optical properties of Yb3+ ions in halogeno-sulphide glasses[J]. Opt Mater, 2005, 27(11): 1748-1753.
[6] [6] V Petit, E H Sekiya, T Okazaki, et al.. Improvement of Yb3+ doped optical fiber preforms by using MCVD method[C]. SPIE, 2008, 6998: 69980A.
[7] [7] Li Wentao, Zhou Qinling, Chen Danping, et al.. Research progress of Yb-doped large-mode area silica glass optical fiber and its application in high-power fiber lasers[J]. Laser & Optoelectronics Progress, 2013, 50(2): 020005.
[8] [8] Li Wentao, Zhou Qinling, Zhang Lei, et al.. Watt-level Yb-doped silica glass fiber laser with a core made by sol-gel method[J]. Chin Opt Lett, 2013, 11(9): 091601.
[9] [9] Joona J Koponen, Laeticia Petit, Teemu Kokki, et al.. Progress in direct nanoparticle deposition for the development of the next generation fiber lasers[J]. Optical Engineering, 2011, 50(11): 111605.
[10] [10] Martin Leich, Florian Just, Andreas Langner, et al.. Highly efficient Yb-doped silica fibers prepared by powder sinter technology[J]. Optics Letter, 2011, 36(9): 1557-1559.
[11] [11] Joan J Montiel i Ponsoda, Lars Norin, Changgeng Ye, et al.. Ytterbium-doped fibers fabricated with atomic layer deposition method[J]. Optics Express, 2012, 20(22): 25085-25095.
[12] [12] Northwest college of light industry. Glass Technology[M]. Beijing: Light industry press,1982. 246.
[13] [13] J Kirchhof, S Unger, A Schwuchow, et al.. Materials for high-power fiber lasers[J]. J Non-Cryst Solids, 2006, 352(23): 2399-2403.
[14] [14] A Langner, G Schtz, M Such, et al.. A new material for high power laser fibers[C]. SPIE, 2008, 6873: 687311.
[15] [15] Wang Chao, Zhou Guiyao, Liu Hongzhan, et al.. Properties of non-bridging oxygen hole centers defects in Yb3+/Al3+ Co-doped photonic crystal fiber by using powder melting technology[J]. J Lightwave Technol, 2013, 31(17): 2864-2868.
[16] [16] D C Hanna, R M Percival, I R Perry, et al.. An ytterbium-doped monomode fiber laser: broadly tunable operation from 1.010 μm to 1.162 μm and three-level operation at 974 nm[J]. Journal of Modern Optics, 1990, 37(4): 517-525.
[17] [17] H M Pask, R J Carman, D C Hanna, et al.. Ytterbium-doped silica fiber lasers: versatile sources for the 1-1.2 μm region[J]. IEEE Journal of Selected Topics in Quantum Electronics, 1995, 1(1): 2-13.
[18] [18] Mccumber D E. Einstein relations connecting broadband emission and absorption spectra[J]. Physical Review, 1964, 136(4A): A954-A957.
[19] [19] Han Ying, Hou Lantian, Xia Changming, et al.. Investigation on the fabrication and luminescence characteristics of Yb3+ and Al3+ co-doped silicate glasses[J]. Acta Physica Sinica, 2011, 60(5): 054212.
[21] [21] Li Weinan, Ding Guanglei, Lu Min, et al.. Investigation on spectrum properties of Yb3+-doped laser glasses[J]. Spectroscopy and Spectral Analysis, 2006, 26(10): 1781-1784.
[22] [22] Wu Qingqing, Xu Feng, Zhang Guiju, et al.. Spectrum and ion-exchange properties of ytterbium-doped lithium silicate glass[J]. Acta Optica Sinica, 2012, 32(9): 0916004.
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Wang Chao, Zhou Guiyao, Han Ying, Xia Changming, Zhao Yuanyuan. Yb3+/Al3+ Co-Doped Silica Glass Prepared by Melting Technology Based on High-Frequency Plasma[J]. Chinese Journal of Lasers, 2014, 41(6): 606001
Category: materials and thin films
Received: Nov. 8, 2013
Accepted: --
Published Online: May. 19, 2014
The Author Email: Chao Wang (wangchao_198504@sina.com)