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Design and modeling of InP-based InGaAs/GaAsSb type-II “W” type quantum wells for mid-Infrared laser applications
Journal of Applied Physics
◽
10.1063/1.4789634
◽
2013
◽
Vol 113
(4)
◽
pp. 043112
◽
Cited By ~ 27
Author(s):
C. H. Pan
◽
C. P. Lee
Keyword(s):
Quantum Wells
◽
Infrared Laser
◽
Type Ii
◽
Laser Applications
◽
Mid Infrared
Download Full-text
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Type I GaSb1-xBix/GaSb quantum wells dedicated for mid infrared laser applications: Photoreflectance studies of bandgap alignment
Journal of Applied Physics
◽
10.1063/1.5094159
◽
2019
◽
Vol 125
(20)
◽
pp. 205706
◽
Cited By ~ 8
Author(s):
R. Kudrawiec
◽
J. Kopaczek
◽
O. Delorme
◽
M. P. Polak
◽
M. Gladysiewicz
◽
...
Keyword(s):
Quantum Wells
◽
Infrared Laser
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Type I
◽
Laser Applications
◽
Mid Infrared
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Mid-infrared laser diode active region based on type-II broken gap quantum wells
Technical Digest. Summaries of papers presented at the Conference on Lasers and Electro-Optics. Postconference Edition. CLEO '99. Conference on Lasers and Electro-Optics (IEEE Cat. No.99CH37013)
◽
10.1109/cleo.1999.834317
◽
2003
◽
Author(s):
J.T. Olesberg
◽
M.E. Flatte
◽
P.S. Day
◽
E.M. Shaw
◽
D.J. Magarrell
◽
...
Keyword(s):
Active Region
◽
Quantum Wells
◽
Laser Diode
◽
Infrared Laser
◽
Type Ii
◽
Mid Infrared
◽
Broken Gap
Download Full-text
Optical peak gain in a PbSe/CdSe core-shell quantum dot in the presence of magnetic field for mid-infrared laser applications
Chemical Physics
◽
10.1016/j.chemphys.2016.11.002
◽
2017
◽
Vol 483-484
◽
pp. 1-6
◽
Cited By ~ 9
Author(s):
S.N. Saravanamoorthy
◽
A. John Peter
◽
Chang Woo Lee
Keyword(s):
Magnetic Field
◽
Quantum Dot
◽
Infrared Laser
◽
Core Shell
◽
Cdse Core
◽
Laser Applications
◽
Mid Infrared
◽
Peak Gain
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Crystal growth and spectroscopic characterization of Pr-doped KPb2Cl5 for mid-infrared laser applications
Journal of Crystal Growth
◽
10.1016/j.jcrysgro.2007.10.042
◽
2008
◽
Vol 310
(7-9)
◽
pp. 2015-2019
◽
Cited By ~ 20
Author(s):
P. Amedzake
◽
E. Brown
◽
U. Hömmerich
◽
S.B. Trivedi
◽
J.M. Zavada
Keyword(s):
Crystal Growth
◽
Spectroscopic Characterization
◽
Infrared Laser
◽
Laser Applications
◽
Mid Infrared
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Enhanced 5-µm emission in Tm,Tb: KPb 2 Br 5 and Tm,Nd:KPb 2 Br 5 for mid-infrared laser applications
10.1117/12.842188
◽
2010
◽
Cited By ~ 1
Author(s):
A. G. Bluiett
◽
D. Peele
◽
K. Norman
◽
E. Brown
◽
U. Hommerich
◽
...
Keyword(s):
Infrared Laser
◽
Laser Applications
◽
Mid Infrared
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Molecular beam epitaxy growth and characterization of broken-gap (type II) superlattices and quantum wells for midwave-infrared laser diodes
Journal of Vacuum Science & Technology B Microelectronics Processing and Phenomena
◽
10.1116/1.591440
◽
2000
◽
Vol 18
(3)
◽
pp. 1623
◽
Cited By ~ 4
Author(s):
T. C. Hasenberg
◽
P. S. Day
◽
E. M. Shaw
◽
D. J. Magarrell
◽
J. T. Olesberg
◽
...
Keyword(s):
Molecular Beam Epitaxy
◽
Quantum Wells
◽
Molecular Beam
◽
Laser Diodes
◽
Infrared Laser
◽
Molecular Beam Epitaxy Growth
◽
Type Ii
◽
Midwave Infrared
◽
Broken Gap
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Efficient 2.0 μm emission in Nd3+/Ho3+ co-doped SiO2-Al2O3-Na2CO3-SrF2-CaF2 glasses for mid-infrared laser applications
Materials Research Bulletin
◽
10.1016/j.materresbull.2018.02.052
◽
2018
◽
Vol 103
◽
pp. 268-278
◽
Cited By ~ 10
Author(s):
Devarajulu Gelija
◽
Deva Prasad Raju Borelli
Keyword(s):
Infrared Laser
◽
Laser Applications
◽
Mid Infrared
◽
Co Doped
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Mid-infrared photoluminescence from structures with InAs/GaSb type II quantum wells
Journal of Physics Conference Series
◽
10.1088/1742-6596/643/1/012078
◽
2015
◽
Vol 643
◽
pp. 012078
◽
Cited By ~ 3
Author(s):
A V Selivanov
◽
I S Makhov
◽
V Yu Panevin
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A N Sofronov
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...
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Quantum Wells
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Type Ii
◽
Mid Infrared
◽
Type Ii Quantum Wells
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Carrier loss mechanisms in type II quantum wells for the active region of GaSb-based mid-infrared interband cascade lasers
Optical Materials
◽
10.1016/j.optmat.2011.06.019
◽
2011
◽
Vol 33
(11)
◽
pp. 1817-1819
◽
Cited By ~ 6
Author(s):
G. Sęk
◽
F. Janiak
◽
M. Motyka
◽
K. Ryczko
◽
J. Misiewicz
◽
...
Keyword(s):
Active Region
◽
Quantum Wells
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Type Ii
◽
Mid Infrared
◽
Type Ii Quantum Wells
◽
Interband Cascade Lasers
◽
Cascade Lasers
◽
Loss Mechanisms
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Investigation of Dy3+/Tm3+ co-doped ZrF4-BaF2-YF3-AlF3 fluoride glass for efficient 2.9 μm mid-infrared laser applications
Journal of Alloys and Compounds
◽
10.1016/j.jallcom.2019.152754
◽
2020
◽
Vol 817
◽
pp. 152754
◽
Cited By ~ 4
Author(s):
Haiyan Zhao
◽
Shijie Jia
◽
Xin Wang
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Ruicong Wang
◽
Xiaosong Lu
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...
Keyword(s):
Infrared Laser
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Fluoride Glass
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Laser Applications
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Mid Infrared
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Co Doped
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