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The Super-fluorescent Single-Mode optical fibers Source for OCT

机译:用于OCT的超荧光单模光纤源

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摘要

Optical coherence tomography (OCT) is a new imaging modality that is being actively used in a variety of medical applications. Optical coherence tomography performs cross sectional imaging by measuring the time delay and magnitude of optical echoes at different transverse positions, essentially by the use of a low coherence interferometry to obtain the depth resolved information of a sample. The interference can occur only when the optical path lengths of light in both the sample arm and reference arm are matched to within the coherence length of light source. The most commonly used light sources in the current OCT systems are the superluminescent diodes (SLD). However, the coherence lengths of SLD are typically 10-30 microns that are not sufficient to achieve the resolution required for many medical applications. In the meantime, the moderate irradiance offered by the SLD limits the real time applications for OCT system, which usually require a power with an order of at least 10 milliwatts. Recently the diode-pumped superfluorescent optical fibers sources has been used in a variety of communication and sensor applications. The superfluorescent rare-earth doped optical fibers source is also the very good OCT systematic light source, because of that have a wide bandwidth of fluorescence and high emission power.
机译:光学相干断层扫描(OCT)是一种新的成像方式,正在积极地用于各种医疗应用中。光学相干断层扫描通过测量时间延迟和不同横向位置处的光回波的幅度来执行横截面成像,基本上是通过使用低相干干涉测量法来获得样品的深度分辨信息。仅当样品臂和参考臂中的光的光路长度匹配到光源的相干长度内时,才会发生干涉。当前的OCT系统中最常用的光源是超发光二极管(SLD)。但是,SLD的相干长度通常为10-30微米,不足以实现许多医疗应用所需的分辨率。同时,SLD提供的适度辐射限制了OCT系统的实时应用,该系统通常需要至少10毫瓦量级的功率。近来,二极管泵浦的超荧光光纤源已经用于各种通信和传感器应用中。超荧光稀土掺杂光纤源也是很好的OCT系统光源,因为它具有宽的荧光带宽和高发射功率。

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