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Behavioral model of integrated qubit gates for quantum reversible logic design

机译:集成量子比特门的行为模型用于量子可逆逻辑设计

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Reversible logic is gaining significant consideration as the potential logic design style for implementation in modern nanotechnology and quantum computing with minimal impact on physical entropy. Recent advances in reversible logic allow schemes for computer architectures using improved quantum computer algorithms. We present a VHDL behavioral model for the design and simulation of the quantum interactions of qubits in theoretical reversible logic structures. Modeling IQ gates, as opposed to only Control-V gates or Toffoli gates, allows for a more robust model that more accurately reflects a theoretical reversible computing structure. This method is an extension to existing programming language and modeling method that allows for reversible logic structures to be designed, simulated, and verified. To the best of our knowledge, this is the first work in the behavioral model of integrated qubit gates.
机译:作为在现代纳米技术和量子计算中实现的潜在逻辑设计风格,对物理熵的影响最小,可逆逻辑正得到广泛的考虑。可逆逻辑的最新进展允许使用改进的量子计算机算法的计算机体系结构方案。我们提出了一种VHDL行为模型,用于设计和仿真理论可逆逻辑结构中量子位的量子相互作用。与仅对Control-V门或Toffoli门进行建模相比,对IQ门进行建模可以提供更强大的模型,该模型可以更准确地反映理论上可逆的计算结构。此方法是对现有编程语言和建模方法的扩展,该方法允许对可逆逻辑结构进行设计,仿真和验证。据我们所知,这是集成量子比特门的行为模型中的第一项工作。

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