Characteristics of tunable Pb/1-x/Sn/x/Te junction lasers in the 8-12-micron region (Tunable Pb-Sn-Te junction laser characteristics and fabrication by impurity diffusion for IR CW operation at liquid helium temperatures)
The characteristics of tunable Pb/1-x/Sn/x/Te (x ranging from .08 to .20) junction lasers are described. The lasers operate CW at liquid-helium temperatures and for the above alloy compositions, the wavelength is in the 8-12-micron region of the infrared. The devices are prepared by antimony diffusi...
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Veröffentlicht in: | Journal of applied physics 1973-09, Vol.44, p.4145-4160 |
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Hauptverfasser: | , |
Format: | Artikel |
Sprache: | eng |
Online-Zugang: | Volltext |
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Zusammenfassung: | The characteristics of tunable Pb/1-x/Sn/x/Te (x ranging from .08 to .20) junction lasers are described. The lasers operate CW at liquid-helium temperatures and for the above alloy compositions, the wavelength is in the 8-12-micron region of the infrared. The devices are prepared by antimony diffusion into large p-type vapor-grown single crystals. Active region width, gain, and loss parameters are derived from measurements of the current density at the lasing threshold, efficiency, and cavity length dependence of the threshold current. Impurity diffused lasers favor oscillation in high-order TE modes and some evidence of filamentary lasing was obtained from the device parameters together with a study of far-field patterns. Results are presented which confirm the model of current tunability of these devices and provide data on refractive index and temperature dependence of the forbidden energy gap in these alloys. |
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ISSN: | 0021-8979 |