DocumentCode :
2153425
Title :
Two-wavelength quantum cascade lasers with heterogeneous cascades
Author :
Straub, Axel ; Gmachl, Claire ; Mosely, Trinesha S. ; Colombelli, Raffaele ; Troccoli, Mariano ; Sivco, Deborah L. ; Sergent, A.M. ; Capasso, Federico ; Cho, Alfrd Y.
Author_Institution :
Bell Labs., Lucent Technol., Murray Hill, NJ, USA
fYear :
2002
fDate :
11-13 Dec. 2002
Firstpage :
141
Lastpage :
144
Abstract :
Quantum cascade (QC) lasers with a dual-wavelength interdigitated cascade are presented. Their active core consists of a stack of active regions and injectors emitting at 8.0 μm interleaved with a second stack emitting at 9.5 μm. Laser action at two substantially different wavelengths is observed, demonstrating the viability of the "interdigitated cascade" approach for multi-wavelength laser emission in the mid-infrared. This laser was also used to investigate the influence of the injector-doping on the device performance. Two QC lasers with different injector-doping levels were measured, in particular one only doped in the injectors bridging the 8.0 μm active region to the 9.5 μm active region and the remaining injectors undoped. A substantial reduction in threshold was observed for the laser wavelength with the undoped injector, confirming the significance of impurity scattering for the laser threshold in QC-lasers. Dual single-mode and tunable emission at two substantially different wavelength could be demonstrated with a QC laser emitting at 5.0 μm and 7.5 μm simultaneously. These lasers may be of interest for trace gas sensing, as the second wavelength could be used as in-built reference channel.
Keywords :
electroluminescence; impurity scattering; infrared spectra; laser modes; laser tuning; quantum cascade lasers; semiconductor device testing; semiconductor doping; 5.0 mum; 7.5 mum; 8 mum; 9.5 mum; active regions; device performance; dual-wavelength interdigitated cascade; heterogeneous cascades; impurity scattering; injector-doping levels; injectors; laser action; laser threshold; midinfrared spectra; multiwavelength laser emission; quantum cascade lasers; reference channel; trace gas sensing; two-wavelength laser; Absorption; Doping; Gas lasers; Impurities; Optical materials; Quantum cascade lasers; Quantum well lasers; Scattering; Tunable circuits and devices; Waveguide lasers;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Optoelectronic and Microelectronic Materials and Devices, 2002 Conference on
ISSN :
1097-2137
Print_ISBN :
0-7803-7571-8
Type :
conf
DOI :
10.1109/COMMAD.2002.1237212
Filename :
1237212
Link To Document :
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