Far-field improvement of quantum cascade lasers through high-reflection coatings

2011 ◽  
Vol 47 (2) ◽  
pp. 127
Author(s):  
W.F. Liu ◽  
L.J. Wang ◽  
J.C. Zhang ◽  
L. Li ◽  
J.Q. Liu ◽  
...  
2008 ◽  
Vol 104 (12) ◽  
pp. 124513 ◽  
Author(s):  
P. Gellie ◽  
W. Maineult ◽  
A. Andronico ◽  
G. Leo ◽  
C. Sirtori ◽  
...  

AIP Advances ◽  
2016 ◽  
Vol 6 (6) ◽  
pp. 065104 ◽  
Author(s):  
B. Röben ◽  
M. Wienold ◽  
L. Schrottke ◽  
H. T. Grahn

2001 ◽  
Vol 37 (22) ◽  
pp. 1341 ◽  
Author(s):  
N. Ulbrich ◽  
G. Scarpa ◽  
A. Sigl ◽  
J. Roßkopf ◽  
G. Böhm ◽  
...  

2002 ◽  
Vol 149 (5) ◽  
pp. 201-205 ◽  
Author(s):  
G. Scarpa ◽  
J. Roßkopf ◽  
G. Abstreiter ◽  
A. Sigl ◽  
N. Ulbrich ◽  
...  

2017 ◽  
Vol 57 (01) ◽  
pp. 1 ◽  
Author(s):  
Frederic Demmerle ◽  
Wolfhard Oberhausen ◽  
Dominik Burghart ◽  
Alexander Wolf ◽  
Ganpath Kumar Veerabathran ◽  
...  

2019 ◽  
Vol 51 (10) ◽  
Author(s):  
Emilia Pruszyńska-Karbownik ◽  
Piotr Gutowski ◽  
Piotr Karbownik

Abstract In this paper, we present experimental results of current-induced polarization change and transverse mode change in mid-infrared quantum cascade lasers. The polarization of laser beam was determined by measuring of far-field distributions of polarization projection on the linear polarization basis. The measured amount of TE-polarized light is associated with transversal mode structure, which was determined based on the far-field power distributions. The TE polarized light contribution in the beams varies from 6 to 19%. This quantity is anti-correlated to the fundamental transverse mode contribution.


2003 ◽  
Vol 39 (22) ◽  
pp. 1590 ◽  
Author(s):  
Ch. Mann ◽  
Q.K. Yang ◽  
F. Fuchs ◽  
W. Bronner ◽  
K. Köhler

2020 ◽  
Vol 116 (16) ◽  
pp. 161105
Author(s):  
U. Senica ◽  
E. Mavrona ◽  
T. Olariu ◽  
A. Forrer ◽  
M. Shahmohammadi ◽  
...  

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