GaSb-based interband cascade laser with hybrid superlattice plasmon-enhanced claddings

We present an interband cascade laser (ICL) emitting at 5.2 µm consisting of an 8-stage active region and a hybrid cladding composed of outer plasmon-enhanced InAs0.915Sb0.085 and inner InAs/AlSb superlattice claddings. The hybrid cladding architecture shows an increase in mode confinement in the ac...

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Veröffentlicht in:Applied physics letters 2024-06, Vol.124 (24)
Hauptverfasser: Petrović, B., Bader, A., Nauschütz, J., Sato, T., Birner, S., Weih, R., Hartmann, F., Höfling, S.
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Sprache:eng
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Zusammenfassung:We present an interband cascade laser (ICL) emitting at 5.2 µm consisting of an 8-stage active region and a hybrid cladding composed of outer plasmon-enhanced InAs0.915Sb0.085 and inner InAs/AlSb superlattice claddings. The hybrid cladding architecture shows an increase in mode confinement in the active region by 11.2% according to the simulation. This is a consequence of a significantly lower refractive index of plasmon-enhanced claddings. The threshold current density is 242 A /cm2 in pulsed operation at room temperature. This is the lowest value reported to date for ICLs emitting at wavelengths longer than 5 µm. We also report close to record value threshold power density of 840 W/ cm2 for ICLs at such wavelengths.
ISSN:0003-6951
1077-3118
DOI:10.1063/5.0217972