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A model for the above-threshold spectra of truncated-well distributed-feedback lasersMORRISON, Gordon B; CASSIDY, Daniel T.IEEE journal of quantum electronics. 2003, Vol 39, Num 2, pp 279-288, issn 0018-9197, 10 p.Article

Comparison of quasi-symmetrical and asymmetrical mode beatings in two-section partially gain-coupled DFB lasersAL-MUMIN, Mohammed; GUIFANG LI.Optical and quantum electronics. 2006, Vol 38, Num 12-14, pp 1045-1051, issn 0306-8919, 7 p.Conference Paper

Nonlinear analysis of a dielectric distributed feedback laser with complex coupling coefficientSZCZEPANSKI, P; WEGLIK, P.IEEE journal of quantum electronics. 1995, Vol 31, Num 7, pp 1337-1343, issn 0018-9197Article

Transient side-mode suppression in gain-coupled DFB lasersCHEN, J; MACIEJKO, R; MAKINO, T et al.IEEE journal of quantum electronics. 1998, Vol 34, Num 1, pp 113-119, issn 0018-9197Article

InGaAs/InP gain-coupled distributed feedback laser with a corrugated active layerINOUE, T; SHIN-ICHI NAKAJIMA; LUO, Y et al.Japanese journal of applied physics. 1991, Vol 30, Num 10B, pp L1808-L1810, issn 0021-4922, 2Article

Feasibility study on the application of the quantum disk to the gain-coupled distributed feedback laserSUSA, N.IEEE journal of quantum electronics. 1998, Vol 34, Num 8, pp 1317-1324, issn 0018-9197Article

1.3 μm gain coupled DFB laser with InGaAlAs MQW grown on absorptive InGaAsP corrugationFENG, W; PAN, J. Q; WANG, L et al.Semiconductor science and technology. 2007, Vol 22, Num 8, pp 859-862, issn 0268-1242, 4 p.Article

1.55 μm InGaAsP/InP partially gain-coupled distributed feedback laser / electroabsorption modulator integrated device for trunk line communicationLUO, Y; WEN, G.-P; SUN, C.-Z et al.SPIE proceedings series. 1998, pp 1-3, isbn 0-8194-3008-0Conference Paper

Relaxation oscillation frequency of DFB lasers with gain couplingJIANYAO CHEN; MACIEJKO, R; CHAMPAGNE, A et al.IEEE journal of quantum electronics. 1995, Vol 31, Num 11, pp 1955-1963, issn 0018-9197Article

Gain-coupled strained layer MQW-DFB lasers with an essentially simplified fabrication process for λ=1.55 μmRAST, A; JOHANNES, T. W; HARTH, W et al.IEEE photonics technology letters. 1995, Vol 7, Num 8, pp 830-832, issn 1041-1135Article

Analysis and simulation of gain-coupled distributed feedback semiconductor lasersRANDONE, F; MONTROSSET, I.IEEE journal of quantum electronics. 1995, Vol 31, Num 11, pp 1964-1973, issn 0018-9197Article

Spontaneous emission rate of gain-coupleb DFB lasers : loss grating against gain gratingJOHANNES, T. W; HARTH, W.Electronics Letters. 1992, Vol 28, Num 14, pp 1347-1349, issn 0013-5194Article

Scanning photoluminescence technique to determine the phase of the grating at the facets of gain-coupled DFB'sADAMS, D. M; CASSIDY, D. T; BRUCE, D. M et al.IEEE journal of quantum electronics. 1996, Vol 32, Num 7, pp 1237-1242, issn 0018-9197Article

Self-consistent analysis of side-mode suppression in gain-coupled DFB semiconductor lasersCHEN, J; MACIEJKO, R; MAKINO, T et al.IEEE journal of quantum electronics. 1998, Vol 34, Num 1, pp 101-109, issn 0018-9197Article

Gain-coupled distributed-feedback GaInAs-GaAs laser structures defined by maskless patterning with focused ion beamsORTH, A; REITHMAIER, J. P; FALLER, F et al.IEEE photonics technology letters. 1995, Vol 7, Num 8, pp 845-847, issn 1041-1135Article

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