Aberration Correction and Speckle Noise Reduction in Image Minified Lensless Holographic Projection Based on Digital Micro-Mirror Device

Lensless holographic projection technology allows for removing of the projection lens and simplifies the optical projection system. It has great potential to be applied in the fields of three-dimensional printing, integrated circuit fabrication, and display. In this article, for image minified lensl...

Full description

Bibliographic Details
Main Authors: Xingjian Li, Bizhong Xia, Haibei Wang, Ping Su
Format: Article
Language:English
Published: IEEE 2024-01-01
Series:IEEE Photonics Journal
Subjects:
Online Access:https://ieeexplore.ieee.org/document/10400777/
_version_ 1797316064375209984
author Xingjian Li
Bizhong Xia
Haibei Wang
Ping Su
author_facet Xingjian Li
Bizhong Xia
Haibei Wang
Ping Su
author_sort Xingjian Li
collection DOAJ
description Lensless holographic projection technology allows for removing of the projection lens and simplifies the optical projection system. It has great potential to be applied in the fields of three-dimensional printing, integrated circuit fabrication, and display. In this article, for image minified lensless holographic projection based on digital micro-mirror device (DMD), we examine the aberration that arises from the use of the DMD in the presence of oblique converging spherical wave illumination. To correct this aberration, we employ a diagonal compression technique on the target pattern. Additionally, we address the issue of speckle noise by relaxing the amplitude constraint in the non-signal domain, which is generated by our proposed aberration correction method. Importantly, this relaxation is achieved without reducing the size of the valid image. Our experimental results demonstrate the successful reconstruction of high-quality images in a lensless holographic projection system.
first_indexed 2024-03-08T03:13:52Z
format Article
id doaj.art-8461e47d9b8047139c80cd275941957f
institution Directory Open Access Journal
issn 1943-0655
language English
last_indexed 2024-03-08T03:13:52Z
publishDate 2024-01-01
publisher IEEE
record_format Article
series IEEE Photonics Journal
spelling doaj.art-8461e47d9b8047139c80cd275941957f2024-02-13T00:00:06ZengIEEEIEEE Photonics Journal1943-06552024-01-011611610.1109/JPHOT.2024.335455610400777Aberration Correction and Speckle Noise Reduction in Image Minified Lensless Holographic Projection Based on Digital Micro-Mirror DeviceXingjian Li0https://orcid.org/0009-0003-9454-1595Bizhong Xia1Haibei Wang2Ping Su3https://orcid.org/0000-0002-8707-1949Institute of Data and Information, Tsinghua Shenzhen International Graduate School, Tsinghua University, Shenzhen, ChinaInstitute of Data and Information, Tsinghua Shenzhen International Graduate School, Tsinghua University, Shenzhen, ChinaInstitute of Data and Information, Tsinghua Shenzhen International Graduate School, Tsinghua University, Shenzhen, ChinaInstitute of Data and Information, Tsinghua Shenzhen International Graduate School, Tsinghua University, Shenzhen, ChinaLensless holographic projection technology allows for removing of the projection lens and simplifies the optical projection system. It has great potential to be applied in the fields of three-dimensional printing, integrated circuit fabrication, and display. In this article, for image minified lensless holographic projection based on digital micro-mirror device (DMD), we examine the aberration that arises from the use of the DMD in the presence of oblique converging spherical wave illumination. To correct this aberration, we employ a diagonal compression technique on the target pattern. Additionally, we address the issue of speckle noise by relaxing the amplitude constraint in the non-signal domain, which is generated by our proposed aberration correction method. Importantly, this relaxation is achieved without reducing the size of the valid image. Our experimental results demonstrate the successful reconstruction of high-quality images in a lensless holographic projection system.https://ieeexplore.ieee.org/document/10400777/Aberration correctiondigital micro-mirror devicelensless holographic projectionspeckle noise reductionspherical wave illumination
spellingShingle Xingjian Li
Bizhong Xia
Haibei Wang
Ping Su
Aberration Correction and Speckle Noise Reduction in Image Minified Lensless Holographic Projection Based on Digital Micro-Mirror Device
IEEE Photonics Journal
Aberration correction
digital micro-mirror device
lensless holographic projection
speckle noise reduction
spherical wave illumination
title Aberration Correction and Speckle Noise Reduction in Image Minified Lensless Holographic Projection Based on Digital Micro-Mirror Device
title_full Aberration Correction and Speckle Noise Reduction in Image Minified Lensless Holographic Projection Based on Digital Micro-Mirror Device
title_fullStr Aberration Correction and Speckle Noise Reduction in Image Minified Lensless Holographic Projection Based on Digital Micro-Mirror Device
title_full_unstemmed Aberration Correction and Speckle Noise Reduction in Image Minified Lensless Holographic Projection Based on Digital Micro-Mirror Device
title_short Aberration Correction and Speckle Noise Reduction in Image Minified Lensless Holographic Projection Based on Digital Micro-Mirror Device
title_sort aberration correction and speckle noise reduction in image minified lensless holographic projection based on digital micro mirror device
topic Aberration correction
digital micro-mirror device
lensless holographic projection
speckle noise reduction
spherical wave illumination
url https://ieeexplore.ieee.org/document/10400777/
work_keys_str_mv AT xingjianli aberrationcorrectionandspecklenoisereductioninimageminifiedlenslessholographicprojectionbasedondigitalmicromirrordevice
AT bizhongxia aberrationcorrectionandspecklenoisereductioninimageminifiedlenslessholographicprojectionbasedondigitalmicromirrordevice
AT haibeiwang aberrationcorrectionandspecklenoisereductioninimageminifiedlenslessholographicprojectionbasedondigitalmicromirrordevice
AT pingsu aberrationcorrectionandspecklenoisereductioninimageminifiedlenslessholographicprojectionbasedondigitalmicromirrordevice