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High temperature characteristics of 1.55 μm InGaAs/InGaAsP strain-compensated multiple quantum well lasersMA CHUNSHENG; GUO WENBIN; LIU SHIYONG et al.SPIE proceedings series. 2001, pp 173-177, isbn 0-8194-4341-7Conference Paper

Incorporation of carrier capture and escape processes into a self-consistent cw model for Quantum Well lasersBORRUEL, L; ARIAS, J; ROMERO, B et al.Microelectronics journal. 2003, Vol 34, Num 5-8, pp 675-677, issn 0959-8324, 3 p.Conference Paper

Between darkness and lightMATTHEWS, S. J.Laser focus world. 2000, Vol 36, Num 6, pp 71-78, issn 1043-8092, 6 p.Article

Optimization of separate confinement heterostructure waveguide for quantum well lasersJAIN, Alok; MEHTA, S. K; JAIN, R. K et al.SPIE proceedings series. 2002, pp 199-202, isbn 0-8194-4500-2, 2VolConference Paper

Building with atomic layersMATTHEWS, Stephen J.Laser focus world. 2001, Vol 37, Num 2, pp 141-144, issn 1043-8092, 3 p.Article

Antimonide-based DFB lasers emitting above 2.6 μmBARAT, D; ANGELLIER, J; VICET, A et al.Electronics Letters. 2007, Vol 43, Num 23, pp 1281-1282, issn 0013-5194, 2 p.Article

Determination of spontaneous emission rate from RIN dataZHENG, W; TAYLOR, G. W; HUO, Y et al.Optics communications. 2005, Vol 255, Num 1-3, pp 102-113, issn 0030-4018, 12 p.Article

Novel Separate Confinement Heterostructure Design for Long-Wavelength LasersYONG, Y. S; WONG, H. Y; YOW, H. K et al.IEEE electron device letters. 2011, Vol 32, Num 7, pp 925-927, issn 0741-3106, 3 p.Article

Inverse-Quantum-Engineering: A New Methodology for Designing Quantum Cascade LasersWALDMUELLER, Ines; WANKE, Michael C; LERTTAMRAB, Maytee et al.IEEE journal of quantum electronics. 2010, Vol 46, Num 9-10, pp 1414-1420, issn 0018-9197, 7 p.Article

An Analytical Model for the Ordered Nanopore Array Diode LaserBOEHM VERMA, Varun; ELARDE, Victor C; COLEMAN, James J et al.IEEE journal of quantum electronics. 2009, Vol 45, Num 1-2, pp 10-20, issn 0018-9197, 11 p.Article

Charging Dynamics in Electrically Pumped Quantum WellsBÄUMNER, Ada; KIRA, Mackillo; KOCH, Stephan W et al.IEEE journal of quantum electronics. 2009, Vol 45, Num 7-8, pp 1024-1032, issn 0018-9197, 9 p.Article

Carrier dynamics in quantum well lasersTHRÄNHARDT, A; KOCH, S. W; HADER, J et al.Optical and quantum electronics. 2006, Vol 38, Num 4-6, pp 361-368, issn 0306-8919, 8 p.Conference Paper

Microscopic simulation of semiconductor lasers at telecommunication wavelengthsTHRANHARDT, A; BUCKERS, C; SCHLICHENMAIER, C et al.Optical and quantum electronics. 2006, Vol 38, Num 12-14, pp 1005-1009, issn 0306-8919, 5 p.Conference Paper

Highly reliable 1.5-μm DFB laser with high-mesa SIBH structureTAKESHITA, Tatsuya; TADOKORO, Takashi; IGA, Ryuzo et al.I.E.E.E. transactions on electron devices. 2007, Vol 54, Num 3, pp 456-461, issn 0018-9383, 6 p.Article

On the evolution of carrier distribution and wavelength switching in asymmetric multiple quantum-well lasersHUILING WANG; BRUCE, Douglas M; CASSIDY, Daniel T et al.IEEE journal of quantum electronics. 2007, Vol 43, Num 3-4, pp 243-248, issn 0018-9197, 6 p.Article

On the simulation by a magnetic field of the quantized states in a quantum-well laser diodeGRADO-CAFFARO, M. A; GRADO-CAFFARO, M.Optik (Stuttgart). 2010, Vol 121, Num 18, pp 1717-1718, issn 0030-4026, 2 p.Article

40°C < T < 95° C mode-hop-free operation of uncooled AIGalnAs-MQW discrete-mode laser diode with emission at X = 1.3 μmPHELAN, R; KELLY, B; O'CARROLL, J et al.Electronics letters. 2009, Vol 45, Num 1, pp 43-45, issn 0013-5194, 3 p.Article

Room-temperature singlemode continuous-wave operation of distributed feedback GalnNAs laser diodes at 1.5 μmBISPING, D; HÖFLING, S; PUCICKI, D et al.Electronics Letters. 2008, Vol 44, Num 12, pp 737-738, issn 0013-5194, 2 p.Article

Temperature dependence of the threshold current density of a quantum dot laserASRYAN, L. V; SURIS, R. A.IEEE journal of quantum electronics. 1998, Vol 34, Num 5, pp 841-850, issn 0018-9197Article

Coulomb effects on quantum-well luminescence spectra and radiative recombination timesHOYER, Walter; KIRA, Mackillo; KOCH, Stephan W et al.Journal of the Optical Society of America. B, Optical physics (Print). 2007, Vol 24, Num 6, pp 1344-1353, issn 0740-3224, 10 p.Article

High device yield and performance of InGaAsP MQW DFB lasers with absorptive gratingPARK, S. S; PARK, S. W; YU, J. S et al.Electronics Letters. 2007, Vol 43, Num 20, pp 1095-1096, issn 0013-5194, 2 p.Article

High-power, high-brightness GaInSb/AlGaAsSb quantum-well diode-lasers emitting at 1.9 μmPFAHLER, C; MANZ, C; KAUFEL, G et al.Lasers and Electro-optics Society. 2004, isbn 0-7803-8557-8, 2Vol, Vol2, 479-480Conference Paper

Improvement of MBE-grown 0.81 μm high power lasers reliability by indium incorporation into AlGaAs QW active layerALEXEEV, A. N; CHALY, V. P; DUDIN, A. L et al.SPIE proceedings series. 2002, pp 163-166, isbn 0-8194-4500-2, 2VolConference Paper

Broad area semiconductor lasers with Gaussian-like current distributionQIAO, Zhongliang; ZHANG, Jing; LIU, Chunling et al.Proceedings of SPIE, the International Society for Optical Engineering. 2008, Vol 6824, pp 682415.1-682415.7, issn 0277-786X, isbn 978-0-8194-6999-1, 1VolConference Paper

Diodes laser pour les télécommunications optiques = Laser diodes for optical communicationsGUIMARD, Denis; TATEBAYASHI, Jun; ARAKAWA, Yasuhiko et al.Techniques de l'ingénieur. Electronique. 2006, Vol E1, Num RE48, issn 0399-4120, RE48.1-RE48.12Article

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