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首页> 外文期刊>Journal of Experimental and Theoretical Physics >On time-optimal NMR control of states of qutrits represented by quadrupole nuclei with the spin i = 1
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On time-optimal NMR control of states of qutrits represented by quadrupole nuclei with the spin i = 1

机译:关于自旋i = 1的四极核表示的四态态的时间最优NMR控制

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Elementary logical operators (selective rotation, Fourier transform, controllable phase shift, and SUM gate) are considered for a quantum computer based on three-level systems (qutrits) represented by nuclear spins I = 1 under nuclear magnetic resonance conditions. The computer simulation of the realization of these operators by means of simple and composite selective radiofrequency (RF) pulses and optimized RF pulses is performed. The time dependence of the amplitude of last pulses is found by numerical optimization at different durations. Two variants are proposed for realization of a two-qutrit SUM gate by using one-qutrit or two-qutrit optimized RF pulses. The calculated time dependences of realization errors were used to study the time optimality of different methods for obtaining gates, proposed earlier and in this paper. The advantages and disadvantages of each of the methods are evaluated for different values of physical parameters.
机译:对于基于核磁共振条件下由核自旋I = 1表示的三级系统(量子)的量子计算机,考虑了基本逻辑运算符(选择性旋转,傅立叶变换,可控相移和SUM门)。通过简单和复合的选择性射频(RF)脉冲和优化的RF脉冲,对这些算子的实现进行了计算机仿真。通过在不同持续时间进行数值优化,可以找到最后一个脉冲幅度的时间依赖性。提出了两种变体,以通过使用一夸特或两奎特优化的RF脉冲来实现两奎特SUM门。计算出的实现误差的时间依赖性被用来研究早先和本文提出的获取门的不同方法的时间最优性。针对物理参数的不同值评估了每种方法的优缺点。

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