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Construction and Implementation of NMR Quantum Logic Gates for Two Spin Systems

机译:两个自旋系统的NMR量子逻辑门的构造和实现

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The implementation of small prototype quantum computers has been studied through ensemble quantum computing via NMR measurements. In such laboratory studies it is convenient to have access to a wide array of logic gates. Here a systematic approach to reduce the logic gate to an NMR pulse sequence is introduced. This approach views the truth table for a quantum logic operation as a permutation matrix that corresponds to a propagator for an NMR transition. This propagator is then used as the starting point for the derivation of a pulse sequence. Pulse sequences for all the permutations of a four level system are reported along with implementations of representative examples on a two spin-1/2 system, ~(13)C-labeled chloroform.
机译:小型原型量子计算机的实现已通过NMR测量通过集成量子计算进行了研究。在这样的实验室研究中,可以方便地访问各种各样的逻辑门。这里介绍了一种将逻辑门减少到NMR脉冲序列的系统方法。该方法将量子逻辑运算的真值表视为对应于NMR跃迁传播子的置换矩阵。然后,将该传播器用作导出脉冲序列的起点。报告了四能级系统所有排列的脉冲序列,以及在两个自旋1/2系统(〜(13)C标记的氯仿)上的代表性实例的实现。

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