MEASUREMENT AND CALCULATION OF SPONTANEOUS RECOMBINATION CURRENT AND OPTICAL GAIN IN GAAS-ALGAAS QUANTUM-WELL STRUCTURES

被引:90
作者
BLOOD, P [1 ]
KUCHARSKA, AI [1 ]
JACOBS, JP [1 ]
GRIFFITHS, K [1 ]
机构
[1] PHILIPS RES LABS,REDHILL RH1 5HA,SURREY,ENGLAND
关键词
D O I
10.1063/1.349622
中图分类号
O59 [应用物理学];
学科分类号
摘要
Experimental determinations have been made of the peak optical gain as a function of spontaneous recombination current density for GaAs quantum wells of width 25 and 58 angstrom bounded by AlGaAs barriers. These data were obtained from measurements of spontaneous emission spectra, observed through narrow windows in the 50-mu-m-wide contact stripes of oxide isolated lasers, using only a single reference value of the optical absorption coefficient above the band edge to calibrate the measurements in absolute units. These results are in good agreement with gain-current curves calculated using a model which includes unintentional monolayer well width fluctuations, band-gap narrowing and intraband carrier-carrier scattering. The characteristic intraband scattering time is calculated from first principles as a function of electron energy and carrier density on the basis of a 2-dimensional Auger-type process. This lifetime gives a much better representation of our observed spontaneous spectra than a lifetime which is simply dependent upon carrier density. The comparison between experiment and model calculation involves no adjustable parameters. For the 58-angstrom-wide wells there is a difference between the experimental and calculated gain-current curves at low values of gain. We show that this is a consequence of applying the Einstein relations to a broadened spectrum in the process of deriving the gain from the observed spontaneous emission spectrum. A direct comparison of the shapes of experimental and calculated spontaneous emission spectra at several injection levels provides a more rigorous, yet equally valid, verification of the computer model.
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页码:1144 / 1156
页数:13
相关论文
共 26 条
[11]  
BLOOD P, UNPUB
[12]   A MODEL FOR GRIN-SCH-SQW DIODE-LASERS [J].
CHINN, SR ;
ZORY, PS ;
REISINGER, AR .
IEEE JOURNAL OF QUANTUM ELECTRONICS, 1988, 24 (11) :2191-2214
[13]   BAND MIXING EFFECTS ON QUANTUM-WELL GAIN [J].
COLAK, S ;
EPPENGA, R ;
SCHUURMANS, MFH .
IEEE JOURNAL OF QUANTUM ELECTRONICS, 1987, 23 (06) :960-968
[14]   CALCULATED THRESHOLD CURRENT OF GAAS QUANTUM WELL LASERS [J].
DUTTA, NK .
JOURNAL OF APPLIED PHYSICS, 1982, 53 (11) :7211-7214
[15]   EXPERIMENTAL-DETERMINATION OF THE RELATION BETWEEN MODAL GAIN AND CURRENT-DENSITY FOR ALGAAS SINGLE QUANTUM WELL LASERS GROWN BY METALORGANIC VAPOR-PHASE EPITAXY [J].
HAGEN, SH ;
VANTBLIK, HFJ ;
BOERMANS, MJB ;
EPPENGA, R .
APPLIED PHYSICS LETTERS, 1988, 52 (24) :2015-2016
[16]   GAIN SPECTRA IN GAAS DOUBLE-HETEROSTRUCTURE INJECTION LASERS [J].
HAKKI, BW ;
PAOLI, TL .
JOURNAL OF APPLIED PHYSICS, 1975, 46 (03) :1299-1306
[17]  
HENRY CH, 1985, SEMICONDUCT SEMIMET, V22, P153
[18]   MEASUREMENT OF GAIN AND ABSORPTION-SPECTRA IN ALGAAS BURIED HETEROSTRUCTURE LASERS [J].
HENRY, CH ;
LOGAN, RA ;
MERRITT, FR .
JOURNAL OF APPLIED PHYSICS, 1980, 51 (06) :3042-3050
[19]   ABSORPTION, EMISSION, AND GAIN SPECTRA OF 1.3-MU-M INGAASP QUATERNARY LASERS [J].
HENRY, CH ;
LOGAN, RA ;
TEMKIN, H ;
MERRITT, FR .
IEEE JOURNAL OF QUANTUM ELECTRONICS, 1983, 19 (06) :941-946
[20]   GRADED BARRIER SINGLE QUANTUM WELL LASERS - THEORY AND EXPERIMENT [J].
KASEMSET, D ;
HONG, CS ;
PATEL, NB ;
DAPKUS, PD .
IEEE JOURNAL OF QUANTUM ELECTRONICS, 1983, 19 (06) :1025-1030