High-accuracy disposable micro-optical anti-counterfeiting labels based on single-molecule quantum coherence
Abstract
In this work we introduce an innovative approach to single-molecule quantum coherence (SMQC)-based disposable micro-optical anti-counterfeiting labels. This method facilitates the editing and reading of anti-counterfeiting with single molecules used as the anti-counterfeiting information labels. The label is meticulously crafted through inkjet printing technology, while its authentication is achieved via frequency domain imaging. Through a validation process including experimental demonstration, numerical simulation, and neural network analysis, we demonstrate the feasibility of this approach, further validate the integrity of the miniature anti-counterfeiting information storage, and verify the signal extraction accuracy with the recognition accuracy of the labels is consistently above 99.995%. The combination of SMQC-based disposable micro-optical anti-counterfeiting technology is expected to enable more precise preparation of single-molecule-array chips, thus providing a crucial foundation for the advancement of high-tech and smart manufacturing industries.
Cite
@article{arxiv.2503.07113,
title = {High-accuracy disposable micro-optical anti-counterfeiting labels based on single-molecule quantum coherence},
author = {Shuangping Han and Kai Song and Pengyu Zan and Changzhi Yu and Ao Li and Haitao Zhou and Chengbing Qin and Liantuan Xiao},
journal= {arXiv preprint arXiv:2503.07113},
year = {2025}
}
Comments
21 pages,6 figures