首页> 外文会议>Conference on Optical Coherence tomography and coherence domain optical methods in biomedicine XXI >Dependence on fiber Fabry-Perot tunable filter characteristics in an all-fiber swept-wavelength laser for use in an optical coherence tomography system
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Dependence on fiber Fabry-Perot tunable filter characteristics in an all-fiber swept-wavelength laser for use in an optical coherence tomography system

机译:依赖于全光纤扫掠波长激光器中的光纤法布里 - 珀罗可调滤波器特性,用于光学相干断层扫描系统

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Optical coherence tomography (OCT) has become a useful and common diagnostic tool within the field of ophthalmology. Although presently a commercial technology, research continues in improving image quality and applying the imaging method to other tissue types. Swept-wavelength lasers based upon fiber ring cavities containing fiber Fabry-Perot tunable filters (FFP-TF), as an intracavity element, provide swept-source optical coherence tomography (SS-OCT) systems with a robust and scalable platform. The FFP-TF can be fabricated within a large range of operating wavelengths, free spectral ranges (FSR), and finesses. To date, FFP-TFs have been fabricated at operating wavelengths from 400 nm to 2.2 μm, FSRs as large as 45 THz, and finesses as high as 30 000. The results in this paper focus on presenting the capability of the FFP-TF as an intracavity element in producing swept-wavelength lasers sources and quantifying the trade off between coherence length and sweep range. We present results within a range of feasible operating conditions. Particular focus is given to the discovery of laser configurations that result in maximization of sweep range and/or power. A novel approach to the electronic drive of the PZT-based FFP-TF is also presented, which eliminates the need for the existence of a mechanical resonance of the optical device. This approach substantially increases the range of drive frequencies with which the filter can be driven and has a positive impact for both the short all-fiber laser cavity (presented in this paper) and long cavity FDML designs as well.
机译:光学相干断层扫描(OCT)已成为眼科领域的有用和常见的诊断工具。虽然目前是商业技术,但研究继续提高图像质量并将成像方法应用于其他组织类型。基于含有纤维环腔的扫掠波长激光器,该光纤环形腔可调谐过滤器(FFP-TF)作为腔内元件,提供具有稳健和可伸缩平台的扫描源光学相干断层扫描(SS-OCT)系统。 FFP-TF可以在大范围内的操作波长,自由谱范围(FSR)和细腻内制造。迄今为止,FFP-TFS已经在400nm至2.2μm,fsrs的工作波长,FSRS大至45至45六边,并且精致高达30 000.本文的结果侧重于呈现FFP-TF的能力在扫描波长激光源产生并定量相干长度和扫描范围之间的折衷的腔内元件。我们在一系列可行的操作条件下显示结果。特别焦点对激光配置的发现,这导致扫描范围和/或功率的最大化。还提出了一种基于PZT的FFP-TF的电子驱动的新方法,这消除了对光学装置的机械谐振的存在的需要。该方法基本上增加了可以驱动过滤器的驱动频率范围,并且对短全光纤激光腔(本文呈现)和长腔FDML设计具有正影响。

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