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Simulation of Broad Spectral Bandwidth Emitters at 1060 nm for Optical Coherence Tomography

机译:用于光学相干层析成像的1060nm宽光谱带宽发射器的模拟

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摘要

The simulation of broad spectral bandwidth light sources (semiconductor optical amplifiers (SOA) and superluminescent diodes (SLD)) for application in ophthalmic optical coherence tomography is reported. The device requirements and origin of key device parameters are outlined, and a range of single and double InGaAs/GaAs quantum well (QW) active elements are simulated with a view to application in different OCT embodiments. We confirm that utilising higher order optical transitions is beneficial for single QW SOAs, but may introduce deleterious spectral modulation in SLDs. We show how an addition QW may be introduced to eliminate this spectral modulation, but that this results in a reduction of the gain spectrum width. We go on to explore double QW structures where the roles of the two QWs are reversed, with the narrow QW providing long wavelength emission and gain. We show how this modification in the density of states results in a significant increase in gain-spectrum width for a given current. © (2016) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:报道了用于眼科光学相干层析成像的宽光谱带宽光源(半导体光放大器(SOA)和超发光二极管(SLD))的仿真。概述了器件要求和关键器件参数的来源,并模拟了一系列单晶和双晶InGaAs / GaAs量子阱(QW)有源元件,以期应用于不同的OCT实施例中。我们确认利用高阶光跃迁对单个QW SOA有利,但可能会在SLD中引入有害的光谱调制。我们展示了如何引入附加的QW来消除这种频谱调制,但这会导致增益频谱宽度的减小。我们继续探索双QW结构,其中两个QW的作用相反,而窄QW提供长波长发射和增益。我们展示了在给定电流下状态密度的这种改变如何导致增益谱宽度的显着增加。 ©(2016)版权,光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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