Multi‐Dimensional Meta‐Holography Encrypted by Orbital Angular Momentum, Frequency, and Polarization

Author:

Zhu Lei123ORCID,Wei Jinxu2,Dong Liang2,Shang Guanyu4,Guan Chunsheng5,Burokur Shah Nawaz6,Ding Xumin78ORCID

Affiliation:

1. School of Computer and Control Engineering Qiqihar University Qiqihar 161006 China

2. Communication and Electronics Engineering Institute Qiqihar University Qiqihar 161006 China

3. Key Laboratory of Big Data Network Security Detection and Analysis in Heilongjiang Qiqihar University Qiqihar 161000 China

4. Department of Microwave Engineering Harbin Institute of Technology Harbin 150001 China

5. Air and Missile Defense College Air Force Engineering University Xi'an 710051 China

6. LEME UPL, Univ Paris Nanterre Ville d'Avray F92410 France

7. Advanced Microscopy and Instrumentation Research Center Harbin Institute of Technology Harbin 150080 China

8. Key Laboratory of Millimeter Waves Southeast University Nanjing 210096 China

Abstract

AbstractMetasurface holographic encryption, as an emerging and highly promising technique, presents the advantages of multi‐dimension and high security and consequently provides a flexible and convenient platform for information encryption. Recent years have witnessed rapid progress in meta‐holographic encryption through the utilization of different dimensions of electromagnetic (EM) waves, yet enhancing the capacity and security of encrypted information remains an endless goal. In this context, the concept of three physical dimensions encrypted metasurface holography is proposed in which orbital angular momentum (OAM) is fully synergized with frequency and polarization state. The mechanism relies on the simultaneous control of these dimensions and arbitrarily overlaying them in each operation channel, thereby acting as a multi‐dimensional key to realize information encryption and decryption. As a proof‐of‐concept experiment, a three‐physical dimension encrypted meta‐hologram is designed that conceals four real images as encrypted information in 32 information channels. Remarkably, a specific OAM order, frequency, and polarization state is required to decrypt the designed meta‐hologram. This work opens a new avenue for multi‐dimensional encrypted holography, which has broad application prospects for information security and data storage in the era of big data.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Heilongjiang Province

Publisher

Wiley

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