Shiu Min-Tzung, Chew Yang-Kun, Chan Huang-Tian, Wong Xin-Yu, Chang Chi-Ching
Appl Opt. 2015 Jan 1;54(1):A84-8. doi: 10.1364/AO.54.000A84.
In this work, arbitrary micro phase-step digital holography with optical interferometry and digital image processing is utilized to obtain information about an image of a three-dimensional object and encrypting keys. Then, a computer-generated hologram is used for the purpose of holographic encryption. All information about the keys is required to perform the decryption, comprising the amplitude and phase distribution of the encrypting key, the distance of image reconstruction, zero-order term elimination, and twin-image term suppression. In addition to using identifiable information on different image planes and linear superposition processing hidden within the encrypted information, not only can we convey an important message, but we can also achieve anticounterfeiting. This approach retains the strictness of traditional holographic encryption and the convenience of digital holographic processing without image distortion. Therefore, this method provides better solutions to earlier methods for the security of the transmission of holographic information.
在这项工作中,利用具有光学干涉测量和数字图像处理的任意微相位步长数字全息术来获取三维物体图像和加密密钥的信息。然后,使用计算机生成的全息图进行全息加密。执行解密需要所有关于密钥的信息,包括加密密钥的幅度和相位分布、图像重建距离、零阶项消除和孪生像项抑制。除了使用不同图像平面上的可识别信息以及隐藏在加密信息中的线性叠加处理外,我们不仅可以传达重要信息,还可以实现防伪。这种方法既保留了传统全息加密的严格性,又具备数字全息处理的便利性且无图像失真。因此,该方法为早期全息信息传输安全方法提供了更好的解决方案。