Title :
High average power first-order distributed feedback quantum cascade lasers
Author :
Hofstetter, D. ; Aellen, T. ; Beck, M. ; Faist, J.
Author_Institution :
Inst. de Phys., Neuchatel Univ., Switzerland
Abstract :
We present distributed feedback quantum cascade lasers at 965 cm/sup -1/ with a high average optical output power at temperatures of up to 60/spl deg/C. At a duty cycle of 3%, the averaged maximal output power of a 55-μm wide and 1.5-mm-long device at -30/spl deg/C was 13.6 mW; at 60/spl deg/C, the device emitted 2 mkV. Corresponding peak optical powers of 450 mW at -30/spl deg/C and of 70 mW at 60/spl deg/C have been observed. Due to the lateral current injection, we achieved single-mode behavior in a slightly distorted zero-order lateral mode across the whole range of investigated temperatures and output powers. At room temperature, the threshold current density was on the order of 6.7 kA/cm2; the characteristic temperature T0 was, due to tuning of the Bragg resonance into the gain curve, rather high, namely 310 K.
Keywords :
current density; distributed feedback lasers; laser beams; laser feedback; laser modes; laser variables measurement; molecular beam epitaxial growth; optical fabrication; quantum well lasers; -30 C; 1.5 mm; 13.6 mW; 2 mW; 298 K; 310 K; 450 mW; 55 mum; 60 C; 70 mW; 965 cm/sup -1/; Bragg resonance; averaged maximal output power; characteristic temperature; distributed feedback quantum cascade lasers; duty cycle; gain curve; high average optical output power; high average power first-order distributed feedback quantum cascade lasers; lateral current injection; output powers; peak optical powers; room temperature; single-mode behavior; slightly distorted zero-order lateral mode; temperatures; threshold current density; tuning; Distributed feedback devices; Laser tuning; Optical distortion; Optical feedback; Power generation; Quantum cascade lasers; Resonance; Stimulated emission; Temperature distribution; Threshold current;
Journal_Title :
Photonics Technology Letters, IEEE