Article ID Journal Published Year Pages File Type
733465 Optics & Laser Technology 2013 10 Pages PDF
Abstract

The key space of phase encryption algorithm using discrete random phase mask is investigated by numerical simulation in this paper. Random phase mask with finite and discrete phase levels is considered as the core component in most practical optical encryption architectures. The key space analysis is based on the design criteria of discrete random phase mask. The role of random amplitude mask and random phase mask in optical encryption system is identified from the perspective of confusion and diffusion. The properties of discrete random phase mask in a practical double random phase encoding scheme working in both amplitude encoding (AE) and phase encoding (PE) modes are comparably analyzed. The key space of random phase encryption algorithm is evaluated considering both the encryption quality and the brute-force attack resistibility. A method for enlarging the key space of phase encryption algorithm is also proposed to enhance the security of optical phase encryption techniques.

► We analyze double random phase encoding method from block cipher point of view. ► We analyze the parameters of random phase mask on the quality of encrypted image. ► We present the new version of key space of double random phase encoding system.

Related Topics
Physical Sciences and Engineering Engineering Electrical and Electronic Engineering
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