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Proceedings Paper

Ring resonator-based surface emitting quantum cascade lasers
Author(s): E. Mujagic; C. Schwarzer; M. Nobile; H. Detz; S. Ahn; P. Klang; A. M. Andrews; W. Schrenk; C. Deutsch; K. Unterrainer; J. Chen; C. Gmachl; G. Strasser
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Paper Abstract

We describe the design, simulation, fabrication and operation of ring cavity surface emitting lasers (RCSEL) based on quantum cascade structures for the midinfrared (MIR) and terahertz (THz) spectral range. MIR RCSELs facilitate an enhancement of optical power and a reduction in threshold current density, as compared to Fabry-Perot (FP) lasers. In continuous wave operation the maximum temperature of ring based devices is 50 K higher than in FP emitters. Also in THz QCLs a twofold increase in radiation efficiency is observed when compared to FP lasers. The emitters exhibit a robust single-mode operation around 8 μm and 3.2 THz, with a side mode suppression ratio of 30 dB. The ring-shaped resonator forms symmetric far-field profiles, represented by a lobe separation of ~1.5° and ~15° for MIR and THz lasers, respectively.

Paper Details

Date Published: 12 February 2010
PDF: 10 pages
Proc. SPIE 7616, Novel In-Plane Semiconductor Lasers IX, 76161Q (12 February 2010); doi: 10.1117/12.842703
Show Author Affiliations
E. Mujagic, Technische Univ. Wien (Austria)
C. Schwarzer, Technische Univ. Wien (Austria)
M. Nobile, Technische Univ. Wien (Austria)
H. Detz, Technische Univ. Wien (Austria)
S. Ahn, Technische Univ. Wien (Austria)
P. Klang, Technische Univ. Wien (Austria)
A. M. Andrews, Technische Univ. Wien (Austria)
W. Schrenk, Technische Univ. Wien (Austria)
C. Deutsch, Technische Univ. Wien (Austria)
K. Unterrainer, Technische Univ. Wien (Austria)
J. Chen, Princeton Univ. (United States)
Shanghai Institute of Technical Physics (China)
C. Gmachl, Princeton Univ. (United States)
G. Strasser, Technische Univ. Wien (Austria)
SUNY (United States)


Published in SPIE Proceedings Vol. 7616:
Novel In-Plane Semiconductor Lasers IX
Alexey A. Belyanin; Peter M. Smowton, Editor(s)

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