Title :
Emission Characteristics of a 1.5-
m All-Semiconductor Tapered Master Oscillator Power Amplifier
Author :
Vilera, M. ; Perez-Serrano, A. ; Tijero, J.M.G. ; Esquivias, I.
Author_Institution :
CEMDATIC-E.T.S.I. Telecomun., Univ. Politec. de Madrid, Madrid, Spain
Abstract :
We present experimental results on the emission characteristics of a 1.5-μm distributed feedback (DFB) tapered master oscillator power amplifier (MOPA) in a wide range of steady-state injection conditions, showing different dynamical behaviors. A detailed analysis of the optical and radio-frequency spectra has allowed the identification of three different emission regimes: i) stable amplified DFB emission, but with wavelength jumps when sweeping the injection currents; ii) multimode Fabry-Perot (FP) operation of the complete MOPA cavity; and iii) self-pulsed operation at frequencies between 5 and 8 GHz. The quasi-periodic occurrence of these emission regimes as a function of the injected currents is interpreted in terms of a thermally tuned competition between the modes of the master oscillator and the compound cavity modes. The physical origin of the wavelength jumps and of the alternation between regimes is discussed.
Keywords :
distributed feedback lasers; laser beams; laser cavity resonators; laser stability; optical pulse generation; power amplifiers; semiconductor lasers; MOPA cavity; all-semiconductor tapered master oscillator power amplifier; compound cavity modes; distributed feedback MOPA; emission characteristics; frequency 5 GHz to 8 GHz; injection currents; multimode Fabry-Perot operation; optical spectra; quasiperiodic occurrence; radio-frequency spectra; self-pulsed operation; stable amplified DFB emission; steady-state injection conditions; wavelength 1.5 mum; wavelength jumps; Cavity resonators; Optical devices; Optical feedback; Oscillators; Power generation; Radio frequency; Stimulated emission; High power semiconductor lasers; Master Oscillator Power Amplifier; master oscillator power amplifier; multimode dynamics;
Journal_Title :
Photonics Journal, IEEE
DOI :
10.1109/JPHOT.2015.2402597