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Development of Fibre Optic Broadband Sources at 1 μm region for Optical Coherence Tomography

机译:开发用于光学相干层析成像的1μm区域的光纤宽带光源

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Recent developments on broadband optical sources emitting at 1050 nm wavelength for medical applications, in particular optical coherence tomography (OCT), have revealed enhanced depth penetration into the choroid, reduced scattering losses and improved image performances in eyes with turbid media, when compared to the most commercial used semiconductor optical source technology at 820 nm. In this paper, we present our study of fibre optic broadband sources (BBS) at 1 micron region, based on the amplified spontaneous emission (ASE) from rare-earth doped silica fibres for the integration into OCT systems. The target specifications for this type of sources are: 1050 nm central emission wavelength, with spectral width of ~70 nm, tens of miliwatts of output power and smoothly shaped output spectra. Several combinations of rare-earth doped optical fibres integrated into different fibre optic configurations have been tested. Optical bandwidth optimization and spectral shaping using different fibre optic techniques are presented and their autocorrelation function compared.
机译:与医疗仪器相比,医疗应用(尤其是光学相干断层扫描(OCT))在1050 nm波长处发射的宽带光源的最新发展显示,其在脉络膜中的深度穿透性增强,散射损耗降低,图像性能提高。最商用的半导体光源技术是820 nm。在本文中,我们基于掺稀土石英纤维的自发放大辐射(ASE),将其集成到OCT系统中,对1微米区域的光纤宽带光源(BBS)进行了研究。这类光源的目标规格是:中心波长1050 nm,光谱宽度约70 nm,输出功率数十毫瓦,输出光谱平滑。已经测试了集成到不同光纤配置中的几种稀土掺杂光纤的组合。介绍了使用不同光纤技术的光带宽优化和频谱整形,并比较了它们的自相关函数。

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