论文标题
全量器控制的信息流量和误差缩放
Information flow and error scaling for fully-quantum control
论文作者
论文摘要
最佳设计的量子系统控制权是工程师小说和更有效的量子技术的越来越重要的作用。在这里,在与另一个最佳初始化辅助量子系统的交互中控制任意量子系统来表示的情况下,我们显示量子通道容量设置了最佳控制误差的缩放行为。具体而言,我们证明,通过最大化频道映射初始控制状态到受控系统的目标状态的量子容量来确保最小控制误差,即,即优化了从控制器到要控制的系统的量子信息流。当系统和控制器是Qubits或单个骨模式时,可以提供由数值证据支持的分析结果,并且可以应用于可控量子设备的非常大的平台。
The optimally designed control of quantum systems is playing an increasingly important role to engineer novel and more efficient quantum technologies. Here, in the scenario represented by controlling an arbitrary quantum system via the interaction with an another optimally initialized auxiliary quantum system, we show that the quantum channel capacity sets the scaling behaviour of the optimal control error. Specifically, we prove that the minimum control error is ensured by maximizing the quantum capacity of the channel mapping the initial control state into the target state of the controlled system, i.e., optimizing the quantum information flow from the controller to the system to be controlled. Analytical results, supported by numerical evidences, are provided when the systems and the controller are either qubits or single Bosonic modes and can be applied to a very large class of platforms for controllable quantum devices.