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Refractive index measurements of multiple layers using numerical refocusing in FF-OCT

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Abstract
We propose and demonstrate the novel method of refractive index (RI) measurement for each layer of multilayered samples, which is based on numerical refocusing in full field optical coherence tomography (FF-OCT). The en-face FF-OCT image on an inner layer boundary of a multilayered sample is unintentionally blurred or defocused due to the RI of the sample itself, but can be numerically refocused. The refocusing is performed by numerically shifting the image sensor plane of the system, in general. However, by calculating the corresponding sample shift and then compared it with the actual sample shifting distance, we could extract the average RI of the layer between any two layer boundaries within the multilayered sample. In addition, the thickness of that particular layer could be derived at the same time. For the idea proof, several samples were prepared by stacking, for each sample, two transparent plates with a gap in between. While changing the material of the plate and filling the gap with oil, the RIs of the plate and the oil were measured. For oils of various RIs, from 1.2977 to 1.3857, the measured RIs were well matched with the reported ones within 0.205%. Moreover, even with a stack of various and multiple plates in front of the same oil layer, the oil RI and the physical thickness of the oil layer were extracted with average errors of only 0.065% and 0.990%, respectively. (C) 2013 Optical Society of America
Author(s)
Min, GihyeonChoi, Woo JuneKim, Ju WanLee, Byeong Ha
Issued Date
2013-12
Type
Article
DOI
10.1364/OE.21.029955
URI
https://scholar.gist.ac.kr/handle/local/15332
Publisher
Optical Society of America
Citation
OPTICS EXPRESS, v.21, no.24, pp.29955 - 29967
ISSN
1094-4087
Appears in Collections:
Department of Electrical Engineering and Computer Science > 1. Journal Articles
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