Large Aberration Correction by Magnetic Fluid Deformable Mirror with Model-Based Wavefront Sensorless Control Algorithm

Magnetic fluid is a stable colloidal suspension of nano-sized, single-domain ferri/ferromagnetic particles dispersed in a liquid carrier. The liquid can be magnetized by the ferromagnetic particles aligned with the external magnetic field, which can be used as a wavefront corrector to correct the la...

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Main Authors: Xiang Wei, Yuanyuan Wang, Zhan Cao, Dziki Mbemba, Azhar Iqbal, Zhizheng Wu
Format: Article
Language:English
Published: MDPI AG 2019-07-01
Series:International Journal of Molecular Sciences
Subjects:
Online Access:https://www.mdpi.com/1422-0067/20/15/3697
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spelling doaj-37c4ab6fa7f143c7a9e1f815ef66b51a2020-11-25T01:57:17ZengMDPI AGInternational Journal of Molecular Sciences1422-00672019-07-012015369710.3390/ijms20153697ijms20153697Large Aberration Correction by Magnetic Fluid Deformable Mirror with Model-Based Wavefront Sensorless Control AlgorithmXiang Wei0Yuanyuan Wang1Zhan Cao2Dziki Mbemba3Azhar Iqbal4Zhizheng Wu5Department of Precision Mechanical Engineering, Shanghai University, Shanghai 200444, ChinaDepartment of Precision Mechanical Engineering, Shanghai University, Shanghai 200444, ChinaDepartment of Precision Mechanical Engineering, Shanghai University, Shanghai 200444, ChinaDepartment of Precision Mechanical Engineering, Shanghai University, Shanghai 200444, ChinaDunlap Institute for Astronomy and Astrophysics, University of Toronto, Toronto, ON M5S 3H4, CanadaDepartment of Precision Mechanical Engineering, Shanghai University, Shanghai 200444, ChinaMagnetic fluid is a stable colloidal suspension of nano-sized, single-domain ferri/ferromagnetic particles dispersed in a liquid carrier. The liquid can be magnetized by the ferromagnetic particles aligned with the external magnetic field, which can be used as a wavefront corrector to correct the large aberrations up to more than 100 µm in adaptive optics (AO) systems. Since the measuring range of the wavefront sensor is normally small, the application of the magnetic fluid deformable mirror (MFDM) is limited with the WFS based AO system. In this paper, based on the MFDM model and the relationship between the second moment (SM) of the aberration gradients and the far-field intensity distribution, a model-based wavefront sensorless (WFSless) control algorithm is proposed for the MFDM. The correction performance of MFDM using the model-based control algorithm is evaluated in a WFSless AO system setup with a prototype MFDM, where a laser beam with unknown aberrations is supposed to produce a focused spot on the CCD. Experimental results show that the MFDM can be used to effectively compensate for unknown aberrations in the imaging system with the proposed model-based control algorithm.https://www.mdpi.com/1422-0067/20/15/3697magnetic fluiddeformable mirrorwavefront sensorlessadaptive optics
collection DOAJ
language English
format Article
sources DOAJ
author Xiang Wei
Yuanyuan Wang
Zhan Cao
Dziki Mbemba
Azhar Iqbal
Zhizheng Wu
spellingShingle Xiang Wei
Yuanyuan Wang
Zhan Cao
Dziki Mbemba
Azhar Iqbal
Zhizheng Wu
Large Aberration Correction by Magnetic Fluid Deformable Mirror with Model-Based Wavefront Sensorless Control Algorithm
International Journal of Molecular Sciences
magnetic fluid
deformable mirror
wavefront sensorless
adaptive optics
author_facet Xiang Wei
Yuanyuan Wang
Zhan Cao
Dziki Mbemba
Azhar Iqbal
Zhizheng Wu
author_sort Xiang Wei
title Large Aberration Correction by Magnetic Fluid Deformable Mirror with Model-Based Wavefront Sensorless Control Algorithm
title_short Large Aberration Correction by Magnetic Fluid Deformable Mirror with Model-Based Wavefront Sensorless Control Algorithm
title_full Large Aberration Correction by Magnetic Fluid Deformable Mirror with Model-Based Wavefront Sensorless Control Algorithm
title_fullStr Large Aberration Correction by Magnetic Fluid Deformable Mirror with Model-Based Wavefront Sensorless Control Algorithm
title_full_unstemmed Large Aberration Correction by Magnetic Fluid Deformable Mirror with Model-Based Wavefront Sensorless Control Algorithm
title_sort large aberration correction by magnetic fluid deformable mirror with model-based wavefront sensorless control algorithm
publisher MDPI AG
series International Journal of Molecular Sciences
issn 1422-0067
publishDate 2019-07-01
description Magnetic fluid is a stable colloidal suspension of nano-sized, single-domain ferri/ferromagnetic particles dispersed in a liquid carrier. The liquid can be magnetized by the ferromagnetic particles aligned with the external magnetic field, which can be used as a wavefront corrector to correct the large aberrations up to more than 100 µm in adaptive optics (AO) systems. Since the measuring range of the wavefront sensor is normally small, the application of the magnetic fluid deformable mirror (MFDM) is limited with the WFS based AO system. In this paper, based on the MFDM model and the relationship between the second moment (SM) of the aberration gradients and the far-field intensity distribution, a model-based wavefront sensorless (WFSless) control algorithm is proposed for the MFDM. The correction performance of MFDM using the model-based control algorithm is evaluated in a WFSless AO system setup with a prototype MFDM, where a laser beam with unknown aberrations is supposed to produce a focused spot on the CCD. Experimental results show that the MFDM can be used to effectively compensate for unknown aberrations in the imaging system with the proposed model-based control algorithm.
topic magnetic fluid
deformable mirror
wavefront sensorless
adaptive optics
url https://www.mdpi.com/1422-0067/20/15/3697
work_keys_str_mv AT xiangwei largeaberrationcorrectionbymagneticfluiddeformablemirrorwithmodelbasedwavefrontsensorlesscontrolalgorithm
AT yuanyuanwang largeaberrationcorrectionbymagneticfluiddeformablemirrorwithmodelbasedwavefrontsensorlesscontrolalgorithm
AT zhancao largeaberrationcorrectionbymagneticfluiddeformablemirrorwithmodelbasedwavefrontsensorlesscontrolalgorithm
AT dzikimbemba largeaberrationcorrectionbymagneticfluiddeformablemirrorwithmodelbasedwavefrontsensorlesscontrolalgorithm
AT azhariqbal largeaberrationcorrectionbymagneticfluiddeformablemirrorwithmodelbasedwavefrontsensorlesscontrolalgorithm
AT zhizhengwu largeaberrationcorrectionbymagneticfluiddeformablemirrorwithmodelbasedwavefrontsensorlesscontrolalgorithm
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