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Superluminescent diode with a broadband gain based on self-assembled InAs quantum dots and segmented contacts for an optical coherence tomography light source

机译:具有宽带增益的超辐射发光二极管,基于自组装Inas量子点和用于光学相干断层扫描光源的分段触点

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摘要

We report a broadband-gain superluminescent diode (SLD) based on self-assembled InAs quantum dots (QDs) for application in a high-resolution optical coherence tomography (OCT) light source. Four InAs QD layers, with sequentially shifted emission wavelengths achieved by varying the thickness of the In0.2Ga0.8As strain-reducing capping layers, were embedded in a conventional p-n heterojunction comprising GaAs and AlGaAs layers. A ridge-type waveguide with segmented contacts was formed on the grown wafer, and an as-cleaved 4-mm-long chip (QD-SLD) was prepared. The segmented contacts were effective in applying a high injection current density to the QDs and obtaining emission from excited states of the QDs, resulting in an extension of the bandwidth of the electroluminescence spectrum. In addition, gain spectra deduced with the segmented contacts indicated a broadband smooth positive gain region spanning 160 nm. Furthermore, OCT imaging with the fabricated QD-SLD was performed, and OCT images with an axial resolution of ∼4 μm in air were obtained. These results demonstrate the effectiveness of the QD-SLD with segmented contacts as a high-resolution OCT light source.ud
机译:我们报告了基于自组装InAs量子点(QD)的宽带增益超发光二极管(SLD),用于高分辨率光学相干层析成像(OCT)光源。将四个InAs QD层嵌入到由GaAs和AlGaAs层组成的传统p-n异质结中,通过改变In0.2Ga0.8As减小应变的覆盖层的厚度来实现发射波长的连续移位。在生长的晶片上形成具有分段触点的脊型波导,并制备了切割后的4毫米长芯片(QD-SLD)。分段触点有效地向QD施加了高注入电流密度,并从QD的激发态获得发射,从而扩展了电致发光光谱的带宽。此外,利用分段触点推导的增益谱表明,宽带平滑正增益区域跨度为160 nm。此外,用制成的QD-SLD进行OCT成像,并获得空气中轴向分辨率约为4μm的OCT图像。这些结果证明了分段触点QD-SLD作为高分辨率OCT光源的有效性。 ud

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