Signal of an autocorrelation low-coherence interferometer probing a layered object by a wave-field with wide angular spectrum
The effect of the width of the angular spectrum (numerical aperture) of a broadband-frequency wave-field probing a layered object on the signal of an autocorrelation low-coherence interferometer (ALCI) under spatially coherent and incoherent illumination of the entrance pupil is considered. It is fo...
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Samara National Research University
2021-06-01
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doaj-03dce8975ffe4c7abd3f945fcdbef2702021-06-19T08:15:43ZengSamara National Research UniversityКомпьютерная оптика0134-24522412-61792021-06-0145334034910.18287/2412-6179-CO-821Signal of an autocorrelation low-coherence interferometer probing a layered object by a wave-field with wide angular spectrumD.V. Lyakin0V.P. Ryabukho1Institute of Precision Mechanics and Control of the Russian Academy of Sciences, 410028, Saratov, Russia, Rabochaya, 24Institute of Precision Mechanics and Control of the Russian Academy of Sciences, 410028, Saratov, Russia, Rabochaya, 24The effect of the width of the angular spectrum (numerical aperture) of a broadband-frequency wave-field probing a layered object on the signal of an autocorrelation low-coherence interferometer (ALCI) under spatially coherent and incoherent illumination of the entrance pupil is considered. It is found that under incoherent illumination an increase in the width of the angular spectrum of the field leads to a decrease in the amplitude, a change in the shape and position of the measuring signals of the interferometer due to decorrelation of the object field partial components which have reflected from various interlayer boundaries inside the object. In the case of coherent illumination, the ALCI signal is formed in a confocal mode, which leads to the amplitude extraction of the measurement signals are determined by the mutual correlations between a partial component reflected from the boundary on which the probing field was focused, and partial components of this field which have reflected from other boundaries within the object. This effect makes it possible to determine parameters of the internal layered structure of an object doing without apriori structure-related information. In this case, an increase in the numerical aperture of the probing light beam leads to an increase in the systematic error in determining the optical thicknesses of the layers, which can be estimated on the basis of the obtained expressions.http://computeroptics.ru/eng/KO/Annot/KO45-3/450305e.htmlinterferometrycoherenceautocorrelation low-coherence interferometerlayered objectangular spectrumnumerical aperture |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
D.V. Lyakin V.P. Ryabukho |
spellingShingle |
D.V. Lyakin V.P. Ryabukho Signal of an autocorrelation low-coherence interferometer probing a layered object by a wave-field with wide angular spectrum Компьютерная оптика interferometry coherence autocorrelation low-coherence interferometer layered object angular spectrum numerical aperture |
author_facet |
D.V. Lyakin V.P. Ryabukho |
author_sort |
D.V. Lyakin |
title |
Signal of an autocorrelation low-coherence interferometer probing a layered object by a wave-field with wide angular spectrum |
title_short |
Signal of an autocorrelation low-coherence interferometer probing a layered object by a wave-field with wide angular spectrum |
title_full |
Signal of an autocorrelation low-coherence interferometer probing a layered object by a wave-field with wide angular spectrum |
title_fullStr |
Signal of an autocorrelation low-coherence interferometer probing a layered object by a wave-field with wide angular spectrum |
title_full_unstemmed |
Signal of an autocorrelation low-coherence interferometer probing a layered object by a wave-field with wide angular spectrum |
title_sort |
signal of an autocorrelation low-coherence interferometer probing a layered object by a wave-field with wide angular spectrum |
publisher |
Samara National Research University |
series |
Компьютерная оптика |
issn |
0134-2452 2412-6179 |
publishDate |
2021-06-01 |
description |
The effect of the width of the angular spectrum (numerical aperture) of a broadband-frequency wave-field probing a layered object on the signal of an autocorrelation low-coherence interferometer (ALCI) under spatially coherent and incoherent illumination of the entrance pupil is considered. It is found that under incoherent illumination an increase in the width of the angular spectrum of the field leads to a decrease in the amplitude, a change in the shape and position of the measuring signals of the interferometer due to decorrelation of the object field partial components which have reflected from various interlayer boundaries inside the object. In the case of coherent illumination, the ALCI signal is formed in a confocal mode, which leads to the amplitude extraction of the measurement signals are determined by the mutual correlations between a partial component reflected from the boundary on which the probing field was focused, and partial components of this field which have reflected from other boundaries within the object. This effect makes it possible to determine parameters of the internal layered structure of an object doing without apriori structure-related information. In this case, an increase in the numerical aperture of the probing light beam leads to an increase in the systematic error in determining the optical thicknesses of the layers, which can be estimated on the basis of the obtained expressions. |
topic |
interferometry coherence autocorrelation low-coherence interferometer layered object angular spectrum numerical aperture |
url |
http://computeroptics.ru/eng/KO/Annot/KO45-3/450305e.html |
work_keys_str_mv |
AT dvlyakin signalofanautocorrelationlowcoherenceinterferometerprobingalayeredobjectbyawavefieldwithwideangularspectrum AT vpryabukho signalofanautocorrelationlowcoherenceinterferometerprobingalayeredobjectbyawavefieldwithwideangularspectrum |
_version_ |
1721371094989930496 |