量子傅里叶变换
加密
离散小波变换
算法
小波包分解
量子相位估计算法
小波变换
哈尔小波转换
分数阶傅立叶变换
计算机科学
平稳小波变换
量子计算机
理论计算机科学
量子纠错
物理
量子
人工智能
小波
傅里叶变换
量子力学
计算机网络
傅里叶分析
作者
Hai-Sheng Li,Chunyu Li,Xiao Chen,Haiying Xia
出处
期刊:Modern Physics Letters A
[World Scientific]
日期:2019-08-30
卷期号:34 (26): 1950214-1950214
被引量:18
标识
DOI:10.1142/s0217732319502146
摘要
An algorithm of quantum image encryption based on a normal arbitrary superposition state (NASS) is proposed by using quantum geometric transform, phase-shift transform, and quantum Haar wavelet packet transform (QHWPT) in this paper. Firstly, to scramble an image, we design an implementation circuit of quantum image pixel exchanges along diagonal lines. Next, [Formula: see text] keys randomly distributed between 0 and [Formula: see text] are encoded in the encryption algorithm by using phase-shift transform. The huge key space makes it difficult to attack encrypted images. Then, we store image information in low frequency using QHWPT to improve encryption effect. After that, the encryption algorithms of gray image and color image are simulated by using MATLAB, respectively. Meanwhile, evaluation indexes such as histogram, complexity and correlation of adjacent pixels are analyzed. Simulation experiments show that the proposed algorithm is valid.
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