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Resolving absolute depth in circular-ranging optical coherence tomography by using a degenerate frequency comb

机译:通过使用退化频梳来解决循环光相干断层扫描中的绝对深度

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摘要

In Fourier-domain optical coherence tomography, an interference signal is generated that spans an RF bandwidth proportional to the product of three parameters: the imaging range, the imaging speed, and the inverse of the axial resolution. Circular-ranging optical coherence tomography (CR-OCT) architectures were introduced to ease long-range imaging by decoupling the imaging range from the signal RF bandwidth. As a consequence, present CR-OCT systems resolve the relative, but not the absolute, depth location of the scatterers. We introduce here a modified implementation of CR-OCT that uses a degenerate frequency comb source that allows recovery of absolute depth information while only minimally impacting the previously described RF bandwidth compression benefits of CR. We show that this degenerate frequency comb can be created by relatively simple modifications to existing frequency comb source designs, and we present absolute ranging capabilities through imaging studies and simulations. (C) 2020 Optical Society of America
机译:在傅立叶域光学相干断层成像,产生一个干扰信号跨越一个RF带宽成比例的三个参数的乘积:成像范围,成像速度和轴向分辨率的倒数。圆形测距光学相干断层扫描(CR-OCT)架构中引入通过从信号RF带宽去耦成像范围缓解远距离成像。因此,目前CR-OCT系统解决相对的,而不是散射体的绝对深度位置。我们在这里介绍的改性实施CR-OCT的使用简并频率梳源,其允许的绝对深度信息的恢复而仅最低限度地影响CR的先前所描述的RF带宽压缩的优势。我们表明,这种退化频率梳可以通过相对简单的修改来创建现有频率梳源的设计,并通过我们成像研究和模拟呈现绝对测距能力。 (c)2020美国光学学会

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