Influence of the Bismuth Content on the Optical Properties and Photoluminescence Decay Time in GaSbBi Films
Tristan Smółka, Michał Rygała, Joonas Hilska, Janne Puustinen, Eero Koivusalo, Mircea Guină, M. Motyka
Abstract
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Tristan Smółka, Michał Rygała, Joonas Hilska, Janne Puustinen, Eero Koivusalo, Mircea Guină, M. Motyka
Abstract
Open-access reader
We report the optical properties of GaSbBi layers grown on GaSb (100) substrates with different bismuth contents of 5.8 and 8.0% Bi. Fourier-transform photoluminescence spectra were determined to identify the band gaps of the studied materials. Further temperature- and power-dependent photoluminescence measurements indicated the presence of localized states connected to bismuth clustering. Finally, time-resolved photoluminescence measurements based on single-photon counting allowed the determination of characteristic photoluminescence decay time constants. Because of the increasing bismuth content and clustering effects, an increase in the time constant was observed.
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We report the optical properties of GaSbBi layers grown on GaSb (100) substrates with different bismuth contents of 5.8 and 8.0% Bi. Fourier-transform photoluminescence spectra were determined to identify the band gaps of the studied materials. Further temperature- and power-dependent photoluminescence measurements indicated the presence of localized states connected to bismuth clustering. Finally, time-resolved photoluminescence measurements based on single-photon counting allowed the determination of characteristic photoluminescence decay time constants. Because of the increasing bismuth content and clustering effects, an increase in the time constant was observed.
Key concepts: Photoluminescence, Bismuth, Materials science, Analytical Chemistry (journal), Photon counting, Content (measure theory), Optoelectronics, Photon