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Qubit Systems from Colored Toric Geometry and Hypercube Graph Theory 被引量:1

Qubit Systems from Colored Toric Geometry and Hypercube Graph Theory
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摘要 We develop a new geometric approach to deal with qubit information systems using colored graph theory. More precisely, we present a one to one correspondence between graph theory, and qubit systems, which may be explored to attack qubit information problems using torie geometry considered as a powerful tool to understand modern physics including string theory. Concretely, we examine in some details the cases of one, two, and three qubits, and we find that they are associated with CP1, CP1×CP1 and CP1×CP1× CP1 toric varieties respectively. Using a geometric procedure referred to as a colored toric geometry, we show that the qubit physics can be converted into a scenario handling toric data of such manifolds by help of hypercube graph theory. Operations on toric information can produce universal quantum gates.
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2017年第9期285-289,共5页 理论物理通讯(英文版)
基金 Supported by FPA2012-35453
关键词 toric geometry information theory and graph theory 量子比特 几何形状 信息系统 超立方体 图理论 环面 现代物理学 量子逻辑门
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