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metadata.dc.type: article
Título : Cubic Quantum Security.
Autor : Mogos, Gabriela
Palabras clave : CRYPTOGRAPHY;QUBITS;SYMMETRIC CRYPTOGRAPHY;ALGORITHMS;ARTIFICIAL INTELLIGENCE;OPTICAL FIBERS
Fecha de publicación : 2014
Citación : Mogos, Gabriela. (2014). Cubic Quantum Security. 2014 International Conference on Computational Science and Computational Intelligence (CSCI). Vol 2. United States. pp. 249-252
Citación : DOI;10.1109/CSCI.2014.130
Resumen : Quantum cryptography provides us new methods of securing the communications. As compared to classical cryptography, which implies different mathematical algorithms to secure the information, quantum cryptography focuses on the physical support of the information. The process of information transmission or stocking is realized by the intermediation of a physical support, for example the photons transmitted by optical fiber or the electrons from the electricity. Communication security can be regarded as securing the physical support of the carrier of the information - in our case the photons from the optical fiber. Consequently, how and what an attacker can find out depends exclusively on the laws of physics. The paper presents a symmetrical encryption method based on the method of mixture used by the rubik's cube.
metadata.dc.description.uri: http://ieeexplore.ieee.org/document/6822341/?reload=true
URI : http://repositorio.educacionsuperior.gob.ec/handle/28000/4106
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