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Optimization of Inductive Coupling between Qbit Rings

机译:Qbit环之间的电感耦合的优化

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摘要

We are investigating inductive coupling optimization schemes and quantization effects for microscopic metal rings as a possible basis for a quantum bit (qbit). Faraday induction is proposed to provide electromagnetic coupling between the rings, therefore acting as an information carrier. Quantizing this information will produce distinguishable ring states that can be denoted by |0 > and |1 > , representing the logic states of the qbit. We have set up simulation case studies with the aim of reducing signal loss between the rings. Further, different quantization mechanisms are investigated analytically. A combination of the two concepts can in theory be used to design qbits, consisting of metal rings with I/O facilities.
机译:我们正在研究电感耦合优化方案和微观金属环的量化效果,以作为量子位(qbit)的可能基础。提出了法拉第感应以在环之间提供电磁耦合,因此用作信息载体。量化此信息将产生可区别的环状态,可以用| 0>和| 1>表示,表示qbit的逻辑状态。我们建立了仿真案例研究,旨在减少环之间的信号损耗。此外,对不同的量化机制进行了分析研究。从理论上讲,这两个概念的组合可用于设计qbit,qbit由具有I / O功能的金属环组成。

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