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Parallelizable Calculation of Observables Values on Analog Quantum Computer

Parallelizable Calculation of Observables Values on Analog Quantum Computer
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摘要 The superiority of hypothetical quantum computers is not due to faster calculations but due to different schemes of calculations running on special hardware. The core of quantum computing follows the way a state of a quantum system is defined when basic things interact with each other. In conventional approach it is implemented through tensor product of qubits. In the geometric algebra formalism simultaneous availability of all the results for non-measured observables is based on the definition of states as points on three-dimensional sphere. The superiority of hypothetical quantum computers is not due to faster calculations but due to different schemes of calculations running on special hardware. The core of quantum computing follows the way a state of a quantum system is defined when basic things interact with each other. In conventional approach it is implemented through tensor product of qubits. In the geometric algebra formalism simultaneous availability of all the results for non-measured observables is based on the definition of states as points on three-dimensional sphere.
作者 Alexander Soiguine Alexander Soiguine(SOiGUINE Quantum Computing, Aliso Viejo, USA)
出处 《Journal of Applied Mathematics and Physics》 2024年第7期2400-2406,共7页 应用数学与应用物理(英文)
关键词 Geometric Algebra Wave Functions ENTANGLEMENT Maxwell Equations Three-Dimensional Sphere States OBSERVABLES Measurements GPU MULTITHREADING OPENCL Geometric Algebra Wave Functions Entanglement Maxwell Equations Three-Dimensional Sphere States Observables Measurements GPU Multithreading OpenCL
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