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Stepped Mirrored Structures For Generating True Time Delays in Stationary Optical Delay Line Proof-Of-Principle Experiments For Application to Optical Coherence Tomography

机译:阶梯式镜像结构,用于在固定光学延迟线上产生真正延迟的原则上的原理原理实验,用于应用于光学相干性断层扫描

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Conventional time domain Optical Coherence Tomography (OCT) relies on the detection of an interference pattern generated by the interference of backscattered light from the sample and a reference Optical Delay Line (ODL). By referencing the sample interference with the scan depth of the ODL, constructive interference indicates depth in the sample of a reflecting structure. Conventional ODLs used in time domain OCT require some physical movement of a mirror to scan a given depth range. This movement results in instrument degradation. Also in some situations it is necessary to have no moving parts. Stationary ODLs (SODLs) include dual Reflective Spatial Light Modulator (SLM) systems (Type Ⅰ) and single Transmissive SLM with match-arrayed-waveguide systems (Type Ⅱ). In this paper, the method of fabrication and characterisation of a number of Stepped Mirrored Structures (SMS) is presented. These structures are intended for later use in proof-of-principle experiments that demonstrate Type II SODL: a six step, 2 mm step depth macro-SMS, an eight step 150 um deep micro-SMS with glue between steps, and a six step 150 um deep micro-SMS with no glue between steps. These SMS are characterized in terms of their fabrication, step alignment and step height increment precision. The degree of alignment of each step was verified using half of a bulk Michelson interferometer. Step height was gauged using a pair of vernier callipers measuring each individual step. A change in notch frequency using an in-fibre Mach-Zhender interferometer was used to gauge the average step height and the result compared to the vernier calliper results. The best aligned SMS was the micro-SMS prepared by method B with no glue between steps. It demonstrated a 95% confidence interval variation of 1% in reflected intensity, with the least variation in intensity within steps. This SMS also had the least absolute variation in step height increment: less than 8 um. Though less variation would be ideal, for producing micro-SMS for proof of principle experiments for Type Ⅱ stationary ODL, of the method compared, method B, with no glue between steps, produced more reproducible step height increments and step alignment.
机译:传统的时域光学相干断层扫描(OCT)依赖于通过来自样本的反向散射光的干扰和参考光学延迟线(ODL)产生的干扰图案的检测。通过参考与ODL的扫描深度的样品干扰,建设性干扰指示反射结构的样本中的深度。在时域OCT中使用的常规ODL需要镜子的一些物理运动来扫描给定深度范围。这种运动导致仪器劣化。同样在某些情况下,有必要没有移动部件。固定式ODL(SODLS)包括双反射空间光调制器(SLM)系统(Ⅰ型)和具有匹配阵波导系统的单透射器SLM(Ⅱ型)。在本文中,提出了阶梯式镜像结构(SMS)的制造和表征的制造方法。这些结构旨在供以后用于原则上的实验,证明II型SOCL:六步,2毫米步进宏SMS,八步150UM深微短信,胶水在步之间,六步150微米深微短信,步骤之间没有胶水。这些SMS的特征在于它们的制造,步骤对准和步高度增量精度。使用一半的散装迈克尔逊干涉仪来验证每个步骤的对准程度。使用一对vernier呼叫者测量步进高度,测量每个单独的步骤。与vernier Calliper结果相比,使用使用光纤Mach-Zhender干涉仪的陷波频率的变化来衡量平均步高度,结果。最佳对准的SMS是通过方法B制备的微短信,在步骤之间没有胶水。它展示了反射强度的95%置信区间变化1%,在步骤内强度的变化最小。此SMS在步高中的阶梯高度的绝对变化中也具有最小的差异:小于8倍。虽然变化较少是理想的,用于生产用于Ⅱ型固定式ODL的原理实验证明的微型SMS,方法B的方法B,在步骤之间没有胶水,产生更多可再现的步长增量和步长对准。

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