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具有多级信息加密功能的非易失性安全光存储介质

Non-volatile and Secure Optical Storage Medium with Multilevel Information Encryption.

作者信息

Shao Jie, Li Xiyang, Liu Meng, Sun Haiqin, Peng Dengfeng, Liu Fuchi, Zhang Qiwei

机构信息

College of Physics and Technology, Guangxi Normal University, Guilin, 541004, China.

Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province, College of Physics and Optoelectronic Engineering, Shenzhen University, Shenzhen, 518060, China.

出版信息

Adv Sci (Weinh). 2024 Dec;11(45):e2408287. doi: 10.1002/advs.202408287. Epub 2024 Oct 16.

Abstract

Non-volatile photomemory based on photomodulated luminescent materials offers unique advantages over voltage-driven memory, including low residual crosstalk and high storage speed. However, conventional materials have thus far been volatile and insecure for data storage because of low trap depth and single-level storage channels. Therefore, the development of a novel non-volatile multilevel storage medium for data encryption remains a challenge. Herein, a robust, non-volatile, multilevel optical storage medium is reported, based on a photomodulated BaMgSiO:Eu, which combined the merits of light-induced valence (Eu → Eu) and photochromic phenomena using optical stimulation effects, accompanied by larger luminescent and color contrasts (>90%). These two unique features provided dual-level storage channels in a single host, significantly improving the data storage security. Notably, dual-level optical signals could be written and erased simultaneously by alternating 265 and 365 nm light stimuli. Theoretical calculations indicated that robust color centers induced by intrinsic interstitial Mg and vacancy defects with suitable trap depths enable excellent reversibility and long-term storage capability. By relying on different luminescent readout mechanisms, the encrypted dual-level information can be accurately decrypted by separately probing the Eu and Eu signals, thus ensuring information security. This study proposes a novel approach for constructing multilevel information storage channels for information security.

摘要

基于光调制发光材料的非易失性光存储器相对于电压驱动存储器具有独特优势,包括低残留串扰和高存储速度。然而,由于陷阱深度低和单级存储通道,传统材料迄今为止对于数据存储而言一直是易失性的且不安全。因此,开发一种用于数据加密的新型非易失性多级存储介质仍然是一项挑战。在此,报道了一种基于光调制的BaMgSiO:Eu的坚固、非易失性多级光存储介质,它利用光刺激效应结合了光致价态(Eu→Eu)和光致变色现象的优点,同时具有更大的发光和颜色对比度(>90%)。这两个独特特性在单个主体中提供了双级存储通道,显著提高了数据存储安全性。值得注意的是,通过交替使用265和365nm光刺激,可以同时写入和擦除双级光信号。理论计算表明,由具有合适陷阱深度的本征间隙Mg和空位缺陷诱导的坚固色心具有出色的可逆性和长期存储能力。通过依靠不同的发光读出机制,通过分别探测Eu和Eu信号可以准确解密加密的双级信息,从而确保信息安全。本研究提出了一种构建用于信息安全的多级信息存储通道的新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/013a/11615769/8ca57b06d907/ADVS-11-2408287-g007.jpg

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