Title :
Generation of pulse trains with high-repetition-rate in anomalous dispersion decreasing fibers
Author :
Korobko, Dmitry A. ; Zolotovskii, Igor O. ; Okhotnikov, Oleg G. ; Sysolyatin, Alex A.
Author_Institution :
Ulyanovsk State Univ., Ulyanovsk, Russia
fDate :
June 30 2014-July 4 2014
Abstract :
Optical pulse generation and compression have been numerically studied in anomalous dispersion decreasing fibers (DDF). We show that evolution of modulation instability (MI) observed with chirped wave packets in tapered fibers produces the mechanism for generation of ultra-short pulses with high repetition rates. The role of modulation instability and Raman self-scattering has been also discussed. The simulations show that pulse chirping enhances self-Raman scattering at early stages of pulse propagation and improves compression of the generated pulses. It is also shown that the presence of amplitude and frequency modulation of the seed wave provide essential impact on the pulse train formation. The new method for increasing the pulse train repetition rate through frequency modulation of the seed wave has been proposed.
Keywords :
amplitude modulation; frequency modulation; nonlinear optics; optical fibre dispersion; optical pulse compression; optical pulse generation; stimulated Raman scattering; DDF; MI; Raman self-scattering; amplitude modulation; anomalous dispersion decreasing fibers; chirped wave packets; frequency modulation; modulation instability; optical pulse compression; optical pulse generation; pulse chirping; pulse propagation; pulse train formation; pulse train generation; pulse train repetition rate; seed wave; tapered fibers; ultrashort pulse generation; Frequency modulation; Nonhomogeneous media; Optical pulses; Dispersion decreasing fibers; modulation instability; pulse trains; soliton-like pulses;
Conference_Titel :
Laser Optics, 2014 International Conference
Conference_Location :
Saint Petersburg
Print_ISBN :
978-1-4799-3884-1
DOI :
10.1109/LO.2014.6886438