Calibration Methods of a Portable Polarizing System for Monitoring Optically Inhomogeneous Media

Theoretical aspects of methods for calibrating Stokes polarimeters are considered. The prospects and opportunities for implementing the presented methods for calibrating portable polarization systems used in biology and medicine are determined. Based on a comparative analysis, a method for calibrati...

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Main Authors: Cong T. Nguyen, Ruslan D. Khlynov, Victoria A. Ryzhova, Alexey A. Gorbachev, Sergey N. Yarishev, Igor A. Konyakhin, Todor S. Djamiykov, Marin B. Marinov
Format: Article
Language:English
Published: MDPI AG 2022-07-01
Series:Computation
Subjects:
Online Access:https://www.mdpi.com/2079-3197/10/8/131
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author Cong T. Nguyen
Ruslan D. Khlynov
Victoria A. Ryzhova
Alexey A. Gorbachev
Sergey N. Yarishev
Igor A. Konyakhin
Todor S. Djamiykov
Marin B. Marinov
author_facet Cong T. Nguyen
Ruslan D. Khlynov
Victoria A. Ryzhova
Alexey A. Gorbachev
Sergey N. Yarishev
Igor A. Konyakhin
Todor S. Djamiykov
Marin B. Marinov
author_sort Cong T. Nguyen
collection DOAJ
description Theoretical aspects of methods for calibrating Stokes polarimeters are considered. The prospects and opportunities for implementing the presented methods for calibrating portable polarization systems used in biology and medicine are determined. Based on a comparative analysis, a method for calibrating a portable Stokes polarimeter for medical applications is proposed. The chosen method provides the smallest error in measuring the parameters of the Stokes vector for calculating the parameters of optical anisotropy and researching the polarization properties of biological tissues. A series of experimental research and statistical analysis of the spatial distributions of the polarization parameters of the calibration sample was carried out to use the results for forming the instrument matrix of the developed Stokes polarimeter during calibration.
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spelling doaj.art-434609f532c245e784dbe3f33bf4c49b2023-12-01T23:34:44ZengMDPI AGComputation2079-31972022-07-0110813110.3390/computation10080131Calibration Methods of a Portable Polarizing System for Monitoring Optically Inhomogeneous MediaCong T. Nguyen0Ruslan D. Khlynov1Victoria A. Ryzhova2Alexey A. Gorbachev3Sergey N. Yarishev4Igor A. Konyakhin5Todor S. Djamiykov6Marin B. Marinov7Engineering Research Faculty, ITMO University, Kronverksky Pr. 49, bldg. A, 197101 St. Petersburg, RussiaEngineering Research Faculty, ITMO University, Kronverksky Pr. 49, bldg. A, 197101 St. Petersburg, RussiaEngineering Research Faculty, ITMO University, Kronverksky Pr. 49, bldg. A, 197101 St. Petersburg, RussiaEngineering Research Faculty, ITMO University, Kronverksky Pr. 49, bldg. A, 197101 St. Petersburg, RussiaEngineering Research Faculty, ITMO University, Kronverksky Pr. 49, bldg. A, 197101 St. Petersburg, RussiaEngineering Research Faculty, ITMO University, Kronverksky Pr. 49, bldg. A, 197101 St. Petersburg, RussiaDepartment of Electronics, Technical University of Sofia, 1756 Sofia, BulgariaDepartment of Electronics, Technical University of Sofia, 1756 Sofia, BulgariaTheoretical aspects of methods for calibrating Stokes polarimeters are considered. The prospects and opportunities for implementing the presented methods for calibrating portable polarization systems used in biology and medicine are determined. Based on a comparative analysis, a method for calibrating a portable Stokes polarimeter for medical applications is proposed. The chosen method provides the smallest error in measuring the parameters of the Stokes vector for calculating the parameters of optical anisotropy and researching the polarization properties of biological tissues. A series of experimental research and statistical analysis of the spatial distributions of the polarization parameters of the calibration sample was carried out to use the results for forming the instrument matrix of the developed Stokes polarimeter during calibration.https://www.mdpi.com/2079-3197/10/8/131instrument matrixMueller matrixpolarizationpolarimeter calibrationportable systemstatistical analysis
spellingShingle Cong T. Nguyen
Ruslan D. Khlynov
Victoria A. Ryzhova
Alexey A. Gorbachev
Sergey N. Yarishev
Igor A. Konyakhin
Todor S. Djamiykov
Marin B. Marinov
Calibration Methods of a Portable Polarizing System for Monitoring Optically Inhomogeneous Media
Computation
instrument matrix
Mueller matrix
polarization
polarimeter calibration
portable system
statistical analysis
title Calibration Methods of a Portable Polarizing System for Monitoring Optically Inhomogeneous Media
title_full Calibration Methods of a Portable Polarizing System for Monitoring Optically Inhomogeneous Media
title_fullStr Calibration Methods of a Portable Polarizing System for Monitoring Optically Inhomogeneous Media
title_full_unstemmed Calibration Methods of a Portable Polarizing System for Monitoring Optically Inhomogeneous Media
title_short Calibration Methods of a Portable Polarizing System for Monitoring Optically Inhomogeneous Media
title_sort calibration methods of a portable polarizing system for monitoring optically inhomogeneous media
topic instrument matrix
Mueller matrix
polarization
polarimeter calibration
portable system
statistical analysis
url https://www.mdpi.com/2079-3197/10/8/131
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