Hyper-sampling imaging

Fuente: arXiv
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Main Authors: Zhang, Ze, Xue, Hemeng, Shang, Mingtao, Yu, Hongfei, Liang, Jinchao, Guan, Meiling, Sun, Chengming, Wang, Huahua, Wang, Shufeng, Ye, Zhengyu, Gao, Feng, Gao, Lu
Format: Preprint
Published: 2024
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author Zhang, Ze
Xue, Hemeng
Shang, Mingtao
Yu, Hongfei
Liang, Jinchao
Guan, Meiling
Sun, Chengming
Wang, Huahua
Wang, Shufeng
Ye, Zhengyu
Gao, Feng
Gao, Lu
author_facet Zhang, Ze
Xue, Hemeng
Shang, Mingtao
Yu, Hongfei
Liang, Jinchao
Guan, Meiling
Sun, Chengming
Wang, Huahua
Wang, Shufeng
Ye, Zhengyu
Gao, Feng
Gao, Lu
contents In our research, we have developed a novel mechanism that allows for a significant reduction in the smallest sampling unit of digital image sensors (DIS) to as small as 1/16th of a pixel, through measuring the intra-pixel quantum efficiency for the first time and recomputing the image. Employing our method, the physical sampling resolution of DIS can be enhanced by 16 times. The method has undergone rigorous testing in real-world imaging scenarios.
format Preprint
id arxiv_https___arxiv_org_abs_2406_18988
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Hyper-sampling imaging
Zhang, Ze
Xue, Hemeng
Shang, Mingtao
Yu, Hongfei
Liang, Jinchao
Guan, Meiling
Sun, Chengming
Wang, Huahua
Wang, Shufeng
Ye, Zhengyu
Gao, Feng
Gao, Lu
Optics
Instrumentation and Methods for Astrophysics
Applied Physics
In our research, we have developed a novel mechanism that allows for a significant reduction in the smallest sampling unit of digital image sensors (DIS) to as small as 1/16th of a pixel, through measuring the intra-pixel quantum efficiency for the first time and recomputing the image. Employing our method, the physical sampling resolution of DIS can be enhanced by 16 times. The method has undergone rigorous testing in real-world imaging scenarios.
title Hyper-sampling imaging
topic Optics
Instrumentation and Methods for Astrophysics
Applied Physics
url https://arxiv.org/abs/2406.18988