liaison 发表于 2025-3-25 06:49:08
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ized on IBM’s QX4 architecture. The benchmarks were compared with Toffoli circuits mapped without the methodology proposed in this paper and implemented on IBM QX4 using two different approaches. The results show that the proposed approach resulted in circuits with up to 67% fewer gates compared wit生存环境 发表于 2025-3-25 13:56:38
Tithi Bhatnagarund circuit suitable for pure quantum computation, i.e., without having to switch between classical and quantum computing for different bases. To this end, this work contributes, for the first time, a fully automated method to translate quantum gate circuits comprised of a subset of common gates expAtheroma 发表于 2025-3-25 19:15:35
Tithi Bhatnagarund circuit suitable for pure quantum computation, i.e., without having to switch between classical and quantum computing for different bases. To this end, this work contributes, for the first time, a fully automated method to translate quantum gate circuits comprised of a subset of common gates exp语源学 发表于 2025-3-25 20:40:46
Tithi Bhatnagarized on IBM’s QX4 architecture. The benchmarks were compared with Toffoli circuits mapped without the methodology proposed in this paper and implemented on IBM QX4 using two different approaches. The results show that the proposed approach resulted in circuits with up to 67% fewer gates compared wit使服水土 发表于 2025-3-26 00:53:39
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Tithi Bhatnagarroach by extensive experimental results and compare with the state-of-the-art practices. To our knowledge, this is the first work towards systematic design of parity preserving reversible circuit and more research is needed in this area to make this approach more scalable.粗俗人 发表于 2025-3-26 15:27:07
Tithi Bhatnagaris end, we use a rigorous quantitative formulation of Landauer’s Principle to develop the theory of . (GRC), which precisely characterizes the minimum requirements for a computation to avoid information loss and the consequent energy dissipation, showing that a much broader range of computations are催眠药 发表于 2025-3-26 19:25:14
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