An improved schlieren method for measurement and automatic reconstruction of the far-field focal spot.

The schlieren method of measuring far-field focal spots offers many advantages at the Shenguang III laser facility such as low cost and automatic laser-path collimation. However, current methods of far-field focal spot measurement often suffer from low precision and efficiency when the final focal s...

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Main Authors: Zhengzhou Wang, Bingliang Hu, Qinye Yin
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5312939?pdf=render
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spelling doaj-579cdb20b1db486f8c66e2853966dc8e2020-11-24T21:48:05ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01122e017141510.1371/journal.pone.0171415An improved schlieren method for measurement and automatic reconstruction of the far-field focal spot.Zhengzhou WangBingliang HuQinye YinThe schlieren method of measuring far-field focal spots offers many advantages at the Shenguang III laser facility such as low cost and automatic laser-path collimation. However, current methods of far-field focal spot measurement often suffer from low precision and efficiency when the final focal spot is merged manually, thereby reducing the accuracy of reconstruction. In this paper, we introduce an improved schlieren method to construct the high dynamic-range image of far-field focal spots and improve the reconstruction accuracy and efficiency. First, a detection method based on weak light beam sampling and magnification imaging was designed; images of the main and side lobes of the focused laser irradiance in the far field were obtained using two scientific CCD cameras. Second, using a self-correlation template matching algorithm, a circle the same size as the schlieren ball was dug from the main lobe cutting image and used to change the relative region of the main lobe cutting image within a 100×100 pixel region. The position that had the largest correlation coefficient between the side lobe cutting image and the main lobe cutting image when a circle was dug was identified as the best matching point. Finally, the least squares method was used to fit the center of the side lobe schlieren small ball, and the error was less than 1 pixel. The experimental results show that this method enables the accurate, high-dynamic-range measurement of a far-field focal spot and automatic image reconstruction. Because the best matching point is obtained through image processing rather than traditional reconstruction methods based on manual splicing, this method is less sensitive to the efficiency of focal-spot reconstruction and thus offers better experimental precision.http://europepmc.org/articles/PMC5312939?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Zhengzhou Wang
Bingliang Hu
Qinye Yin
spellingShingle Zhengzhou Wang
Bingliang Hu
Qinye Yin
An improved schlieren method for measurement and automatic reconstruction of the far-field focal spot.
PLoS ONE
author_facet Zhengzhou Wang
Bingliang Hu
Qinye Yin
author_sort Zhengzhou Wang
title An improved schlieren method for measurement and automatic reconstruction of the far-field focal spot.
title_short An improved schlieren method for measurement and automatic reconstruction of the far-field focal spot.
title_full An improved schlieren method for measurement and automatic reconstruction of the far-field focal spot.
title_fullStr An improved schlieren method for measurement and automatic reconstruction of the far-field focal spot.
title_full_unstemmed An improved schlieren method for measurement and automatic reconstruction of the far-field focal spot.
title_sort improved schlieren method for measurement and automatic reconstruction of the far-field focal spot.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description The schlieren method of measuring far-field focal spots offers many advantages at the Shenguang III laser facility such as low cost and automatic laser-path collimation. However, current methods of far-field focal spot measurement often suffer from low precision and efficiency when the final focal spot is merged manually, thereby reducing the accuracy of reconstruction. In this paper, we introduce an improved schlieren method to construct the high dynamic-range image of far-field focal spots and improve the reconstruction accuracy and efficiency. First, a detection method based on weak light beam sampling and magnification imaging was designed; images of the main and side lobes of the focused laser irradiance in the far field were obtained using two scientific CCD cameras. Second, using a self-correlation template matching algorithm, a circle the same size as the schlieren ball was dug from the main lobe cutting image and used to change the relative region of the main lobe cutting image within a 100×100 pixel region. The position that had the largest correlation coefficient between the side lobe cutting image and the main lobe cutting image when a circle was dug was identified as the best matching point. Finally, the least squares method was used to fit the center of the side lobe schlieren small ball, and the error was less than 1 pixel. The experimental results show that this method enables the accurate, high-dynamic-range measurement of a far-field focal spot and automatic image reconstruction. Because the best matching point is obtained through image processing rather than traditional reconstruction methods based on manual splicing, this method is less sensitive to the efficiency of focal-spot reconstruction and thus offers better experimental precision.
url http://europepmc.org/articles/PMC5312939?pdf=render
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