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Tunable grating-coupled laser oscillation and spectral hole burning in an InAs quantum-dot laser diode

机译:InAs量子点激光二极管中的可调谐光栅耦合激光振荡和光谱烧孔

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摘要

Emission spectra are investigated of a low-threshold InAs quantum-dot laser of the "dots-in-a-well" (DWELL) type operating near 1230 nm. An external dispersion cavity with a diffraction grating is coupled to the laser diode to suppress the subsidiary modes and to tune the central wavelength. A wavelength-dependent competition between the grating-coupled mode and the internal Fabry-Perot modes of the laser suggests that a hole burning in the spectral density of a DWELL laser occurs with a characteristic spectral half width of /spl sim/13 nm (10.5 meV). Simple models of spectral "flattening" and spectral hole burning are presented to explain the broad free-running and grating-coupled lasing spectra of the DWELL device.
机译:研究了在1230 nm附近工作的“井中点”(DWELL)型低阈值InAs量子点激光器的发射光谱。具有衍射光栅的外部色散腔耦合到激光二极管,以抑制辅助模式并调谐中心波长。激光器的光栅耦合模式与内部Fabry-Perot模式之间的波长相关竞争表明,DWELL激光器的光谱密度中出现了一个洞,其特征光谱半宽度为/ spl sim / 13 nm(10.5 meV)。提出了光谱“展平”和光谱孔燃烧的简单模型,以解释DWELL装置的广泛自由运行和光栅耦合激光光谱。

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