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首页> 外文期刊>Physical Review, A >Generation of high-fidelity quantum control methods for multilevel systems
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Generation of high-fidelity quantum control methods for multilevel systems

机译:用于多级系统的高保真量子控制方法

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摘要

In recent decades there has been a rapid development of methods to experimentally control individual quantum systems. A broad range of quantum control methods has been developed for two-level systems; however, the complexity of multilevel quantum systems make the development of analogous control methods extremely challenging. Here we exploit the equivalence between multilevel systems with SU(2) symmetry and spin-1/2 systems to develop a technique for generating new robust, high-fidelity, multilevel control methods. As a demonstration of this technique, we develop adiabatic and composite multilevel quantum control methods and experimentally realize these methods using a ~(171)Yb~+ ion system.We measure the average infidelity of the process in both cases to be around 10~(-4), demonstrating that this technique can be used to develop high-fidelity multilevel quantum control methods and can, for example, be applied to a wide range of quantum computing protocols, including implementations below the fault-tolerant threshold in trapped ions.
机译:近几十年来,在实验控制各种量子系统的方法方面存在迅速发展。为两级系统开发了广泛的量子控制方法;然而,多级量子系统的复杂性使得类似控制方法的发展非常具有挑战性。在这里,我们利用SU(2)对称和Spin-1/2系统的多级系统之间的等价,以开发一种用于产生新的鲁棒,高保真,多级控制方法的技术。作为这种技术的演示,我们开发了绝热和复合多级量子控制方法,并通过A〜(171)Yb〜+离子系统进行了实验实现这些方法。我们测量两种情况下的过程的平均不一于10〜( -4),证明该技术可用于开发高保真多级量子控制方法,并且可以例如应用于广泛的量子计算协议,包括低于捕获离子的容错阈值以下的实现。

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