The Gerchberg–Papoulis Method in Low-Angle Optical Hilbert Diagnostics of Phase Structures

IF 0.5 Q4 PHYSICS, MULTIDISCIPLINARY
E. V. Arbuzov, V. A. Arbuzov, Yu. N. Dubnishchev, O. S. Zolotukhina, M. M. Lapikov, V. V. Lukashov
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引用次数: 0

Abstract

The possibility of processing small-view hilbertograms by the Gerchberg–Papoulis method to restore the spatial distribution of the refractive index was studied. The method consists in iterative transitions from the function estimates in the frequency and coordinate spaces with correction based on a priori information. Numerical modeling of the refractive index reconstruction for various test functions by the Gerchberg–Papoulis method using the Radon data, known for four angles, has been carried out. Using a four-angle tomographic complex implemented on the basis of a modified IAB-463M shadow device, experimental studies were carried out by the example of optical Hilbert diagnostics of reacting media in a high-speed shooting mode (up to 2000 frames per second).

Abstract Image

相结构低角度希尔伯特光学诊断中的格希伯格-帕普利斯方法
摘要 研究了用 Gerchberg-Papoulis 方法处理小视角希尔伯特图以恢复折射率空间分布的可能性。该方法包括从频率和坐标空间的函数估计值进行迭代转换,并根据先验信息进行修正。利用已知的四个角度的 Radon 数据,通过 Gerchberg-Papoulis 方法对各种测试函数的折射率重建进行了数值建模。利用在改进的 IAB-463M 阴影装置基础上实施的四角断层摄影综合装置,以高速拍摄模式(每秒多达 2000 帧)对反应介质进行希尔伯特光学诊断为例,开展了实验研究。
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来源期刊
CiteScore
1.00
自引率
50.00%
发文量
16
期刊介绍: The scope of Optoelectronics, Instrumentation and Data Processing encompasses, but is not restricted to, the following areas: analysis and synthesis of signals and images; artificial intelligence methods; automated measurement systems; physicotechnical foundations of micro- and optoelectronics; optical information technologies; systems and components; modelling in physicotechnical research; laser physics applications; computer networks and data transmission systems. The journal publishes original papers, reviews, and short communications in order to provide the widest possible coverage of latest research and development in its chosen field.
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