Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7132130 | Optics and Lasers in Engineering | 2017 | 7 Pages |
Abstract
A novel optical information verification and encryption method is proposed based on inference principle and phase retrieval with sparsity constraints. In this method, a target image is encrypted into two phase-only masks (POMs), which comprise sparse phase data used for verification. Both of the two POMs need to be authenticated before being applied for decrypting. The target image can be optically reconstructed when the two authenticated POMs are Fourier transformed and convolved by the correct decryption key, which is also generated in encryption process. No holographic scheme is involved in the proposed optical verification and encryption system and there is also no problem of information disclosure in the two authenticable POMs. Numerical simulation results demonstrate the validity and good performance of this new proposed method.
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Authors
Shenlu Zhong, Mengjiao Li, Xiajie Tang, Weiqing He, Xiaogang Wang,