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Developments in quantum information processing by nuclear magnetic resonance: Use of quadrupolar and dipolar couplings

机译:核磁共振在量子信息处理中的发展:四极和偶极耦合的使用

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摘要

Use of dipolar and quadrupolar couplings for quantum information processing (QIP) by nuclear magnetic resonance (NMR) is described. In these cases, instead of the individual spins being qubits, the 2e?‘? energy levels of the spin-system can be treated as an e?‘?-qubit system. It is demonstrated that QIP in such systems can be carried out using transition-selective pulses, in CH3CN, 13CH3CN, 7Li (e??? = 3/2) and 133Cs (e??? = 7/2), oriented in liquid crystals yielding 2 and 3 qubit systems. Creation of pseudopure states, implementation of logic gates and arithmetic operations (half-adder and subtractor) have been carried out in these systems using transition-selective pulses.
机译:描述了将偶极和四极耦合用于通过核磁共振(NMR)进行的量子信息处理(QIP)。在这些情况下,2e?’?而不是单个自旋为qubit。自旋系统的能级可以视为e?'-qubit系统。证明了在这样的系统中,QIP可以使用在液体中取向的CH3CN,13CH3CN,7Li(e ??? = 3/2)和133Cs(e ??? = 7/2)中的过渡选择脉冲来进行。晶体产生2和3量子位系统。在这些系统中,已经使用过渡选择脉冲执行了伪纯状态的创建,逻辑门的实现和算术运算(半加法器和减法器)。

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