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Solution of multidimensional system with XY differentiation of probability density equations for identification of silver nanoparticles on fibers

The article presents the results of compiling and solving a system of multidimensional differential correlation equations of probability densities for identifying colloidal silver nanoparticles on polyester fibers with multidimensional correlation components of Raman polarization spectra. A method i...

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Published in:IOP conference series. Materials Science and Engineering 2020-08, Vol.905 (1), p.12014
Main Authors: Emelyanov, V M, Dobrovolskaya, T A, Emelyanov, V V
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Emelyanov, V V
description The article presents the results of compiling and solving a system of multidimensional differential correlation equations of probability densities for identifying colloidal silver nanoparticles on polyester fibers with multidimensional correlation components of Raman polarization spectra. A method is proposed for increasing the accuracy and speed of identification of silver nanoparticles on polyester fibers, taking into account the longitudinal and transverse polarization of laser radiation over the entire range of the Raman spectrum with the analysis of two peaks sequentially and in order at the same time along the X-side and along the Y-side of the fibers. To implement the method, a program was developed in the Mathcad software. When solving the system using the nonlinear quadratic and differential equations with respect to XY, the probability density equations of distribution ellipses obtained very high accuracy p0 and p1 up to 10−16.
doi_str_mv 10.1088/1757-899X/905/1/012014
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subjects accuracy of nanoparticle identification
Density
Differential equations
Fibers
Mathematical analysis
Nanoparticles
Polarization
polyester fiber
Polyesters
probability of intersection of distribution ellipses
Raman spectra
recognition accuracy
Silver
silver nanoparticles
system of multidimensional equations
title Solution of multidimensional system with XY differentiation of probability density equations for identification of silver nanoparticles on fibers
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