Scheme of thinking quantum systems
arXiv:0909.1186 · doi:10.1002/lapl.200910086
Abstract
A general approach describing quantum decision procedures is developed. The approach can be applied to quantum information processing, quantum computing, creation of artificial quantum intelligence, as well as to analyzing decision processes of human decision makers. Our basic point is to consider an active quantum system possessing its own strategic state. Processing information by such a system is analogous to the cognitive processes associated to decision making by humans. The algebra of probability operators, associated with the possible options available to the decision maker, plays the role of the algebra of observables in quantum theory of measurements. A scheme is advanced for a practical realization of decision procedures by thinking quantum systems. Such thinking quantum systems can be realized by using spin lattices, systems of magnetic molecules, cold atoms trapped in optical lattices, ensembles of quantum dots, or multilevel atomic systems interacting with electromagnetic field.
Latex file, 15 pages, 1 figure
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Cited by in corpus (13)
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- Quantum decision making by social agents
- Processing Information in Quantum Decision Theory
- Spatially-antisymmetric localization of matter wave in a bichromatic optical lattice
- Quantum Cognitive Triad. Semantic geometry of context representation
- Mode interference in quantum joint probabilities for multimode Bose-condensed systems
- Quantitative Predictions in Quantum Decision Theory
- Fast magnetization reversal of nanoclusters in resonator
- Tossing Quantum Coins and Dice
- Manipulating decision making of typical agents
- Role of information in decision making of social agents
- Quantum probability and quantum decision making