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Quantum Parallelism as a Tool for Ensemble Spin Dynamics Calculations

机译:量子并行性作为整体自旋动力学计算的工具

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Efficient simulations of quantum evolutions of spin-1/2 systems are relevant for ensemble quantum computation as well as in typical NMR experiments. We propose an efficient method to calculate the dynamics of an observable provided that the initial excitation is "local." It resorts to a single entangled pure initial state built as a superposition, with random phases, of the pure elements that compose the mixture. This ensures self-averaging of any observable, drastically reducing the calculation time. The procedure is tested for two representative systems: a spin star (cluster with random long range interactions) and a spin ladder.
机译:自旋1/2系统的量子演化的有效模拟与整体量子计算以及典型的NMR实验有关。我们提出一种有效的方法来计算可观察对象的动力学,前提是初始激发是“局部”的。它求助于单个纠缠的纯初始状态,该状态由构成混合物的纯元素的随机相叠加而成,具有随机相。这样可确保对任何可观察值进行自我平均,从而大大减少了计算时间。该程序针对两个代表性系统进行了测试:自旋星(具有随机长距离相互作用的集群)和自旋梯子。

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