author_facet Hamarová, I.
Šmíd, P.
Horváth, P.
Hrabovský, M.
Hamarová, I.
Šmíd, P.
Horváth, P.
Hrabovský, M.
author Hamarová, I.
Šmíd, P.
Horváth, P.
Hrabovský, M.
spellingShingle Hamarová, I.
Šmíd, P.
Horváth, P.
Hrabovský, M.
Measurement Science Review
Methods for Determination of Mean Speckle Size in Simulated Speckle Pattern
Instrumentation
Biomedical Engineering
Control and Systems Engineering
author_sort hamarová, i.
spelling Hamarová, I. Šmíd, P. Horváth, P. Hrabovský, M. 1335-8871 Walter de Gruyter GmbH Instrumentation Biomedical Engineering Control and Systems Engineering http://dx.doi.org/10.2478/msr-2014-0024 <jats:title>Abstract</jats:title> <jats:p> This paper deals with computation of mean speckle size in a speckle pattern generated through a numerical simulation of speckle after reflection of a Gaussian beam off a rough object’s surface. Within this simulation various speckle patterns are obtained by means of change in a parameter of the Gaussian beam. The mean speckle size is computed through two approaches using both the two-dimensional and the one-dimensional normalized autocorrelation function in intensity. Additionally, we propose a distinct optimization of the determination of the mean speckle size by reduction of intensity values representing detected speckle patterns. Results of the determination of the mean speckle size are compared with theoretical predictions</jats:p> Methods for Determination of Mean Speckle Size in Simulated Speckle Pattern Measurement Science Review
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title Methods for Determination of Mean Speckle Size in Simulated Speckle Pattern
title_unstemmed Methods for Determination of Mean Speckle Size in Simulated Speckle Pattern
title_full Methods for Determination of Mean Speckle Size in Simulated Speckle Pattern
title_fullStr Methods for Determination of Mean Speckle Size in Simulated Speckle Pattern
title_full_unstemmed Methods for Determination of Mean Speckle Size in Simulated Speckle Pattern
title_short Methods for Determination of Mean Speckle Size in Simulated Speckle Pattern
title_sort methods for determination of mean speckle size in simulated speckle pattern
topic Instrumentation
Biomedical Engineering
Control and Systems Engineering
url http://dx.doi.org/10.2478/msr-2014-0024
publishDate 2014
physical 177-182
description <jats:title>Abstract</jats:title> <jats:p> This paper deals with computation of mean speckle size in a speckle pattern generated through a numerical simulation of speckle after reflection of a Gaussian beam off a rough object’s surface. Within this simulation various speckle patterns are obtained by means of change in a parameter of the Gaussian beam. The mean speckle size is computed through two approaches using both the two-dimensional and the one-dimensional normalized autocorrelation function in intensity. Additionally, we propose a distinct optimization of the determination of the mean speckle size by reduction of intensity values representing detected speckle patterns. Results of the determination of the mean speckle size are compared with theoretical predictions</jats:p>
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author Hamarová, I., Šmíd, P., Horváth, P., Hrabovský, M.
author_facet Hamarová, I., Šmíd, P., Horváth, P., Hrabovský, M., Hamarová, I., Šmíd, P., Horváth, P., Hrabovský, M.
author_sort hamarová, i.
container_issue 3
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container_title Measurement Science Review
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description <jats:title>Abstract</jats:title> <jats:p> This paper deals with computation of mean speckle size in a speckle pattern generated through a numerical simulation of speckle after reflection of a Gaussian beam off a rough object’s surface. Within this simulation various speckle patterns are obtained by means of change in a parameter of the Gaussian beam. The mean speckle size is computed through two approaches using both the two-dimensional and the one-dimensional normalized autocorrelation function in intensity. Additionally, we propose a distinct optimization of the determination of the mean speckle size by reduction of intensity values representing detected speckle patterns. Results of the determination of the mean speckle size are compared with theoretical predictions</jats:p>
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spelling Hamarová, I. Šmíd, P. Horváth, P. Hrabovský, M. 1335-8871 Walter de Gruyter GmbH Instrumentation Biomedical Engineering Control and Systems Engineering http://dx.doi.org/10.2478/msr-2014-0024 <jats:title>Abstract</jats:title> <jats:p> This paper deals with computation of mean speckle size in a speckle pattern generated through a numerical simulation of speckle after reflection of a Gaussian beam off a rough object’s surface. Within this simulation various speckle patterns are obtained by means of change in a parameter of the Gaussian beam. The mean speckle size is computed through two approaches using both the two-dimensional and the one-dimensional normalized autocorrelation function in intensity. Additionally, we propose a distinct optimization of the determination of the mean speckle size by reduction of intensity values representing detected speckle patterns. Results of the determination of the mean speckle size are compared with theoretical predictions</jats:p> Methods for Determination of Mean Speckle Size in Simulated Speckle Pattern Measurement Science Review
spellingShingle Hamarová, I., Šmíd, P., Horváth, P., Hrabovský, M., Measurement Science Review, Methods for Determination of Mean Speckle Size in Simulated Speckle Pattern, Instrumentation, Biomedical Engineering, Control and Systems Engineering
title Methods for Determination of Mean Speckle Size in Simulated Speckle Pattern
title_full Methods for Determination of Mean Speckle Size in Simulated Speckle Pattern
title_fullStr Methods for Determination of Mean Speckle Size in Simulated Speckle Pattern
title_full_unstemmed Methods for Determination of Mean Speckle Size in Simulated Speckle Pattern
title_short Methods for Determination of Mean Speckle Size in Simulated Speckle Pattern
title_sort methods for determination of mean speckle size in simulated speckle pattern
title_unstemmed Methods for Determination of Mean Speckle Size in Simulated Speckle Pattern
topic Instrumentation, Biomedical Engineering, Control and Systems Engineering
url http://dx.doi.org/10.2478/msr-2014-0024