Paper
29 April 2008 Geometric information in eight dimensions vs. quantum information
Victor I. Tarkhanov, Michael M. Nesterov
Author Affiliations +
Proceedings Volume 7023, Quantum Informatics 2007; 70230J (2008) https://doi.org/10.1117/12.801913
Event: Quantum Informatics 2007, 2007, Moscow, Russian Federation
Abstract
Complementary idempotent paravectors and their ordered compositions, are used to represent multivector basis elements of geometric Clifford algebra G3,0 as the states of a geometric byte in a given frame of reference. Two layers of information, available in real numbers, are distinguished. The first layer is a continuous one. It is used to identify spatial orientations of similar geometric objects in the same computational basis. The second layer is a binary one. It is used to manipulate with 8D structure elements inside the computational basis itself. An oriented unit cube representation, rather than a matrix one, is used to visualize an inner structure of basis multivectors. Both layers of information are used to describe unitary operations - reflections and rotations - in Euclidian and Hilbert spaces. The results are compared with ones for quantum gates. Some consequences for quantum and classical information technologies are discussed.
© (2008) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Victor I. Tarkhanov and Michael M. Nesterov "Geometric information in eight dimensions vs. quantum information", Proc. SPIE 7023, Quantum Informatics 2007, 70230J (29 April 2008); https://doi.org/10.1117/12.801913
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KEYWORDS
Quantum communications

Quantum information

Data processing

Space operations

Superposition

Analog electronics

Information technology

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