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Quantum-information processing by nuclear magnetic resonance: Experimental implementation of half-adder and subtractor operations using an oriented spin-7/2 system

机译:核磁共振的量子信息处理:使用定向自旋7/2系统进行半加法和减法运算的实验实现

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摘要

The advantages of using quantum systems for performing many computational tasks have already been established. Several quantum algorithms have been developed which exploit the inherent property of quantum systems such as superposition of states and entanglement for efficiently performing certain tasks. The experimental implementation has been achieved on many quantum systems, of which nuclear magnetic resonance has shown the largest progress in terms of number of qubits. This paper describes the use of a spin-7/2 as a three-qubit system and experimentally implements the half-adder and subtractor operations. The required qubits are realized by partially orienting 133Cs nuclei in a liquid-crystalline medium, yielding a quadrupolar split well-resolved septet. Another feature of this paper is the proposal that labeling of quantum states of system can be suitably chosen to increase the efficiency of a computational task.
机译:使用量子系统执行许多计算任务的优势已经确立。已经开发了几种量子算法,它们利用量子系统的固有特性,例如状态的叠加和纠缠来有效地执行某些任务。在许多量子系统上已经实现了实验实现,其中在核磁共振数量方面,最大的进展是核磁共振。本文介绍了将spin-7 / 2用作三比特系统,并通过实验实现了半加法器和减法器操作。所需的量子位是通过在液晶介质中部分定向133Cs核来实现的,从而产生一个四极分裂的分辨良好的八肽。本文的另一个特点是建议可以适当选择系统的量子态标记,以提高计算任务的效率。

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