Complete theoretical analysis of actively mode-locked fiber ring laser with external optical modulation of a semiconductor optical amplifier
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[1] K.T. Chan,et al. Generation and wavelength switching of picosecond pulses by optically modulating a semiconductor optical amplifier in a fiber laser with optical delay line , 2003, IEEE Photonics Technology Letters.
[2] H. Avramopoulos,et al. 10 x 30 GHz pulse train generation from semiconductor amplifier fiber ring laser , 2000, IEEE Photonics Technology Letters.
[3] G. New. Pulse evolution in mode-locked quasi-continuous lasers , 1974 .
[4] Julius Goldhar,et al. Active harmonic modelocking of an erbium fiber laser with intracavity Fabry-Perot filters , 1997 .
[5] A. Siegman,et al. FM and AM mode locking of the homogeneous laser - Part I: Theory , 1970 .
[6] Peter A. Andrekson,et al. 40 GHz actively modelocked polarisation maintaining erbium fibre ring laser , 2000 .
[7] H. Haus. Theory of mode locking with a slow saturable absorber , 1975 .
[8] E. Tangdiongga,et al. Sub-picosecond pulse generation employing an SOA-based nonlinear polarization switch in a ring cavity. , 2004, Optics express.
[9] H Avramopoulos,et al. Optical clock repetition-rate multiplier for high-speed digital optical logic circuits. , 1999, Optics letters.
[10] Kyriakos E. Zoiros,et al. Experimental and theoretical studies of a high repetition rate fiber laser, mode-locked by external optical modulation , 2000 .
[11] A. Hirano,et al. Chirp-compensated 40-GHz mode-locked lasers integrated with electroabsorption modulators and chirped gratings , 1999 .
[12] G. Alphonse,et al. 168 channels x 6 GHz from a multiwavelength mode-locked semiconductor laser , 2003, IEEE Photonics Technology Letters.
[13] Jesper Mørk,et al. Theory of the ultrafast optical response of active semiconductor waveguides , 1996 .
[14] Raman Kashyap,et al. Forty times dispersive broadening of femtosecond pulses and complete recompression in a chirped fibre grating , 1995 .
[15] Jian He,et al. All-optical actively modelocked fibre ring laser based on cross-gain modulation in SOA , 2002 .
[16] I. Bennion,et al. Actively mode-locked tunable dual-wavelength erbium-doped fiber laser , 2002, IEEE Photonics Technology Letters.
[17] M. J. Guy,et al. 10 GHz 3 ps actively mode-locked ring laser incorporating a semiconductor laser amplifier and an electroabsorption modulator , 1996 .
[18] Eckehard Schöll,et al. Theory of subpicosecond pulse generation by active modelocking of a semiconductor laser amplifier in an external cavity: limits for the pulsewidth , 1991 .
[19] Govind P. Agrawal,et al. Nonlinear Fiber Optics , 1989 .
[20] A. Bellemare,et al. A broadly tunable erbium-doped fiber ring laser: experimentation and modeling , 2001 .
[21] Zheng-Mao Wu,et al. Rising and falling time of amplified picosecond optical pulses by semiconductor optical amplifiers , 2003 .
[22] Minyu Yao,et al. Theoretical analysis of actively mode-locked fiber ring laser with semiconductor optical amplifier , 2002 .
[23] I. Bennion,et al. Dispersion-modified actively modelocked erbium fibre laser using a chirped fibre grating , 1994 .
[24] Kazi S. Abedin,et al. 154 GHz polarisation-maintaining dispersion-managed actively modelocked fibre ring laser , 2000 .
[25] Kaj B. Jakobsen,et al. Mode-locked 1.5 /spl mu/m semiconductor optical amplifier fiber ring , 1996 .
[26] N. Dutta,et al. High-repetition-rate optical pulse generation using a rational harmonic mode-locked fiber laser , 2000, IEEE Journal of Quantum Electronics.
[27] Chang-Soo Park,et al. Pulse-amplitude equalization in a rational harmonic mode-locked semiconductor fiber ring laser using a dual-drive Mach-Zehnder modulator. , 2004, Optics express.
[28] N. Olsson,et al. Self-phase modulation and spectral broadening of optical pulses in semiconductor laser amplifiers , 1989 .
[29] M. Horowitz,et al. Theoretical and experimental study of harmonically modelocked fiber lasers for optical communication systems , 2000, Journal of Lightwave Technology.
[30] D. M. Patrick. Modelocked ring laser using nonlinearity in a semiconductor laser amplifier , 1994 .
[31] Yizhi Gao,et al. Effect of tunable filter characteristics on the pulse performance of actively mode-locked fiber lasers , 2000 .
[32] Peter J. Delfyett,et al. 20/spl times/5 Gbit/s optical WDM-TDM transmitter using a single-stripe multiwavelength mode-locked semiconductor laser , 1998 .
[33] H Avramopoulos,et al. 20-GHz broadly tunable and stable mode-locked semiconductor amplifier fiber ring laser. , 1999, Optics letters.
[34] Z. Ahmed,et al. HIGH REPETITION RATE OPTICAL PULSE GENERATION BY FREQUENCY MULTIPLICATION IN ACTIVELY MODELOCKED FIBRE RING LASERS , 1996 .
[35] Kyuman Cho,et al. Spectral characteristics of optical pulse amplifications with a holding light in semiconductor optical amplifiers , 1999 .
[36] R. van Roijen,et al. Theory for passive mode-locking in semiconductor laser structures including the effects of self-phase modulation, dispersion, and pulse collisions , 1996 .
[37] Huang De-Xiu,et al. Numerical simulation of recovery enhancement by a CW pump light in semiconductor optical amplifiers , 2002 .
[38] Chang-Soo Park,et al. Pulse-amplitude equalization in a rational harmonic mode-locked semiconductor ring laser using optical feedback , 2002 .
[39] Gong-Ru Lin,et al. Dynamics of optical backward-injection-induced gain-depletion modulation and mode locking in semiconductor optical amplifier fiber lasers. , 2004, Optics express.
[40] H. Takara,et al. 3 Tbit/s (160 Gbit/s/spl times/19 channel) optical TDM and WDM transmission experiment , 1999 .
[41] Mikhail V. Maximov,et al. Gain and threshold characteristics of long wavelength lasers based on InAs/GaAs quantum dots formed by activated alloy phase separation , 2001 .
[42] N. W. Spellmeyer,et al. Wavelength-tunable 40-GHz picosecond harmonically mode-locked fiber laser source , 2004, IEEE Photonics Technology Letters.
[43] S. Corzine,et al. Actively mode-locked semiconductor lasers , 1989 .
[44] H. Avramopoulos,et al. Detailed analysis of active mode-locking , 1986 .
[45] Masatoshi Saruwatari,et al. Stabilisation of a modelocked Er-doped fibre laser by suppressing the relaxation oscillation frequency component , 1995 .
[46] G. Guekos,et al. Gain recovery of bulk semiconductor optical amplifiers , 1998, IEEE Photonics Technology Letters.
[47] K. Zoiros,et al. Design optimization of all-optical actively mode-locked ring laser based on cross-gain modulation in a semiconductor optical amplifier , 2004 .
[48] G P Agrawal,et al. Amplification and compression of weak picosecond optical pulses by using semiconductor-laser amplifiers. , 1989, Optics letters.
[49] L. Fu,et al. Novel technique for the systematic measurement of gain, absolute refractive index spectra, and other parameters of semiconductor lasers , 2000, IEEE Journal of Quantum Electronics.
[50] F.T.S. Yu,et al. Closed-loop binary phase correction of an LCTV using a point diffraction interferometer , 1990, IEEE Photonics Technology Letters.
[51] K. Dreyer,et al. Acceleration of gain recovery in semiconductor optical amplifiers by optical injection near transparency wavelength , 2002, IEEE Photonics Technology Letters.
[52] D. N. Wang,et al. Wavelength tunable optical short pulse generation by self-seeding of a gain-switched Fabry-Pérot laser diode with extended wavelength-tuning range , 2003 .
[53] E. Protonotarios,et al. 10 × 10 GHz simultaneously modelocked multiwavelength fibre ring laser , 1999 .