Journal of the European Optical Society - Rapid publications, Vol 10 (2015)
Dual wavelength single longitudinal mode Ytterbium-doped fiber laser using a dual-tapered Mach-Zehnder interferometer
Abstract
© The Authors. All rights reserved. [DOI: 10.2971/jeos.2015.15013]
Citation Details
Cite this article
References
L. Xia , P. Shum, and T. H. Cheng, â€Photonic generation of microwave signals using a dual-transmission-band FBG filter with controllable wavelength spacing,†Appl. Phys. B-Lasers O. 86, 61–64 (2007).
D. Liu, N. Q. Ngo, G. Ning, P. Shum, and S. C. Tjin, â€Tunable microwave photonic notch filter using a dual-wavelength fiber laser with phase modulation,†Opt. Commun. 266, 240–248 (2006).
M. Tadakuma, O. Aso, and S. Namiki, 104 GHz 328 fs soliton pulse train generation through a comb-like dispersion profiled fiber using short high nonlinearity dispersion fibers (Optical Fiber Communication Conference, Maryland, 2000).
J. R. Qian, J. Su, and L. Hong, â€BA widely tunable dual-wavelength erbium-doped fiber ring laser operating in single longitudinal mode,†Opt. Commun. 281, 44321–4434 (2008).
F. Zhang, P. L. Chu, R. Lai, and G. R. Chen, â€Dual-wavelength chaos generation and synchronization in erbium-doped fiber laser,†IEEE Photonic. Tech. L. 17, 549–551 (2005).
X. Feng, Y. Liu, S. Yuan, G. Kai, W. Zhang, and X. Dong, â€L-Band switchable dual- wavelength erbium-doped fiber laser based on a multimode fiber Bragg grating,†Opt. Express 12, 3834–3839 (2004).
H. Ahmad, M. Dernaika, O. M. Kharraz, M. Alimadad, M. F. Ibrahim, K. S. Lim, and S. W. Harun, â€A tuneable, power efficient and narrow single longitudinal mode fibre ring laser using an inline dual-taper fibre Mach-Zehnder filter,†Laser Phys. 24, 085111 (2014).
P. Zhou, X. Wang, H. Xiao, Y. Ma, and J. Chen, â€Review on recent progress on Yb-doped fiber laser in a variety of oscillation spectral ranges,†Laser Phys. 22, 823–831 (2012).
M. R. A. Moghaddam, S. W. Harun, M. C. Paul, M. Pal, A. Dhar, R. Sen, S. Das, et al., â€Multiwavelength ytterbium-doped fiber ring laser,†Microw. Opt. Techn. Let. 51, 25111–2512 (2009).
R. Chi, K. Lu, and S. Chen, â€Multiwavelength Yb-doped fiber ring laser,†Microw. Opt. Techn. Let. 36, 1701–172 (2003).
H. Wang, Y. G. Li, X. D. Chen, B. Huang, F. Y. Lu, and K. C. Lu, â€Highly efficient dual-wavelength ytterbium-doped fiber linear cavity laser based on cascaded fiber Bragg gratings,†Laser Phys. 19, 1257–1262 (2009).
X. Feng, Y. Liu, S. Fu, S. Yuan, and X. Dong, â€Switchable dualwavelength ytterbium-doped fiber laser based on a few-mode fiber grating,†IEEE Photonic. Tech. L. 16, 762–764 (2004).
H. Ahmad, A. A. Latif, S. F. Norizan, M. Z. Zulkifli, and S. W. Harun, â€Flat and compact switchable dual wavelength output at 1060nm from ytterbium doped fiber laser with an AWG as a wavelength selector,†Opt. Laser Technol. 43, 550–554 (2011).
F. Yin, S. Yang, H. Chen, M. Chen, and S. Xie, â€60-nm-wide tunable single-longitudinal-mode ytterbium fiber laser with passive multiple-ring cavity,†IEEE Photonic. Tech. L. 23, 16581–1660 (2011).
O. B. Jensen, P. E. Andersen, B. Sumpf, K. H. Hasler, G. Erbert, and P. M. Petersen, â€1.5W green light generation by single-pass second harmonic generation of a single-frequency tapered diode laser,†Opt. Express 17, 65321–6539 (2009).
S. Rajbhandari, Z. Ghassemlooy, and J. Perez, â€On the study of the FSO link performance under controlled turbulence and fog atmospheric conditions†in Proceedings of the 2011 11th international conference on telecommunications, 2231–226 (ConTEL, Graz, 2011).
Y. Zhou, P. C. Chui, and K. K. Y. Wong, â€Multiwavelength singlelongitudinal- mode ytterbium-doped fiber laser,†IEEE Photonic. Tech. L. 25, 385–388 (2013).
D. Derickson, Fiber optic test and measurement (Prentice Hall, New York, 1998).
Y. J. Song, L. Zhan, S. Hu, Q. H. Ye and Y. X. Xia, â€Tunable multiwavelength Brillouin-erbium fiber laser with a polarizationmaintaining fiber Sagnac loop filter,†IEEE Photonic. Tech. L. 16, 2015–2017 (2004).
Y. L. Yu, S. K. Liaw, W. C. Hsu, M. H. Shih, and N. K. Chen, â€Single longitudinal mode Ytterbium doped fiber lasers with large proposed tuning range,†Opt. Quant. Electron. 47, 131-137 (2015).