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Controlling open quantum systems: tools, achievements, and limitations

机译:控制开放量子系统:工具,成就和局限性

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The advent of quantum devices, which exploit the two essential elements of quantum physics, coherence and entanglement, has sparked renewed interest in the control of open quantum systems. Successful implementations face the challenge of preserving relevant nonclassical features at the level of device operation. A major obstacle is decoherence, which is caused by interaction with the environment. Optimal control theory is a tool that can be used to identify control strategies in the presence of decoherence. Here we review recent advances in optimal control methodology that allow typical tasks in device operation for open quantum systems to be tackled and discuss examples of relaxation-optimized dynamics. Optimal control theory is also a useful tool to exploit the environment for control. We discuss examples and point out possible future extensions.
机译:利用量子物理学的两个基本要素,即相干性和纠缠性的量子装置的出现,引起了人们对开放量子系统控制的新兴趣。成功的实现面临在设备操作级别保留相关非经典功能的挑战。一个主要障碍是退相干,这是由于与环境的相互作用而引起的。最佳控制理论是一种可以在存在退相干的情况下识别控制策略的工具。在这里,我们回顾了最佳控制方法的最新进展,这些方法允许解决开放量子系统在设备操作中的典型任务,并讨论了松弛优化动力学的示例。最优控制理论也是开发环境进行控制的有用工具。我们讨论示例并指出未来可能的扩展。

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