articleTop 10% cited
Double random-phase encoding in the Fresnel domain
Optics Letters · 2004 · Vol. 29(14) · pp. 1584–1584
Guohai Situ✉(Chinese Academy of Sciences)Jingjuan Zhang✉(Chinese Academy of Sciences)
Abstract
A lensless optical security system based on double random-phase encoding in the Fresnel domain is proposed. This technique can encrypt a primary image to random noise by use of two statistically independent random-phase masks in the input and transform planes, respectively. In this system the positions of the significant planes and the operation wavelength, as well as the phase codes, are used as keys to encrypt and recover the primary image. Therefore higher security is achieved. The sensitivity of the decrypted image to shifting along the propagation direction and to the wavelength are also investigated.
Chaos-based Image/Signal EncryptionAdvanced Steganography and Watermarking TechniquesAdvanced Optical Imaging TechnologiesOpticsEncoding (memory)EncryptionComputer sciencePhase (matter)Image (mathematics)Fresnel numberWavelengthPseudorandom number generatorPhysics
Citations
979
FWCI
7.21
field-weighted impact
References
13
Percentile
98%
vs. same field & year
Citations per year
Cited by
A special attack on the asymmetric cryptosystem based on phase-truncated Fourier transforms
Optics Communications · 2011 · 265 citations
References
Optical encryption by double-random phase encoding in the fractional Fourier domain
Optics Letters · 2000 · 1,158 citations
Optical image encryption based on input plane and Fourier plane random encoding
Optics Letters · 1995 · 2,612 citations
Citation Network
How this paper connects to the literature. Drag to explore, click any node to open that paper.
