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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Read-only-memory-based quantum computation: Experimental explorations using nuclear magnetic resonance and future prospects - art. no. 012306
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Read-only-memory-based quantum computation: Experimental explorations using nuclear magnetic resonance and future prospects - art. no. 012306

机译:基于只读内存的量子计算:利用核磁共振的实验探索和未来前景-艺术。没有。 012306

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Read-only-memory-based (ROM-based) quantum computation (QC) is an alternative to oracle-based QC. It has the advantages of being less "magical," and being more suited to implementing space-efficient computation (i.e., computation using the minimum number of writable qubits). Here we consider a number of small (one- and two-qubit) quantum algorithms illustrating different aspects of ROM-based QC. They are: (a) a one-qubit algorithm to solve the Deutsch problem; (b) a one-qubit binary multiplication algorithm; (c) a two-qubit controlled binary multiplication algorithm; and (d) a two-qubit ROM-based version of the Deutsch-Jozsa algorithm. For each algorithm we present experimental verification using nuclear magnetic resonance ensemble QC. The average fidelities for the implementation were in the ranges 0.9-0.97 for the one-qubit algorithms, and 0.84-0.94 for the two-qubit algorithms. We conclude with a discussion of future prospects for ROM-based quantum computation. We propose a four-qubit algorithm, using Grover's iterate, for solving a miniature "real-world" problem relating to the lengths of paths in a network. [References: 35]
机译:基于只读内存(基于ROM)的量子计算(QC)是基于Oracle的QC的替代方法。它的优点是“魔术性”少,并且更适合于实现节省空间的计算(即使用最少数量可写量子位的计算)。在这里,我们考虑了许多小的(一量子比特和两个量子比特)量子算法,这些算法说明了基于ROM的QC的不同方面。它们是:(a)一种解决Deutsch问题的单比特算法; (b)一种单比特二进制乘法算法; (c)两比特控制的二进制乘法算法; (d)Deutsch-Jozsa算法的基于两比特ROM的版本。对于每种算法,我们都会使用核磁共振集成QC进行实验验证。对于一个量子位算法,实现的平均保真度在0.9-0.97范围内,对于两个量子位算法,其平均保真度在0.84-0.94范围内。最后,我们讨论了基于ROM的量子计算的未来前景。我们提出了一种使用格罗弗(Grover)迭代法的四比特算法,用于解决与网络中路径长度有关的微型“真实世界”问题。 [参考:35]

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