基于量子混合态弱测量的量子噪声保护

Sajede Harraz, S. Cong, Shuang Feng
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引用次数: 5

摘要

由于与环境的相互作用,量子态经常受到不同类型噪声的影响,这成为实际量子计算的最大问题之一。我们研究了通过弱测量和控制操作来保护经过噪声的量子系统的混合状态的可能性。其目的是找到最优的测量强度和控制操作,并使输入和输出状态尽可能接近。我们的方案可以有效地保护任意混合状态免受典型类型噪声源的影响:振幅阻尼、相位阻尼和幅相阻尼。在布洛赫球的不同基底上推导了最优测量和控制算子,以找到针对每种噪声的最佳控制方案。仿真结果验证了该控制方案的有效性。
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Quantum Noise Protection via Weak Measurement for Quantum Mixed States
Due to the interaction with the environment, a quantum state is often affected by the different types of noises which becomes to one of the biggest problems for practical quantum computation. We study the possibility of protecting the mixed state of a quantum system that goes through noise by weak measurements and control operations. The aim is to find the optimal measurement strength and control operations and make the input and output states as close as possible. We show that our scheme can effectively protect arbitrary mixed states against typical types of noise sources: amplitude damping, phase damping and amplitude-phase damping. The optimal measurement and control operators are deduced in different bases of the Bloch sphere to find the best control scheme for each type of noise. The effectiveness of our control scheme is demonstrated by simulation results.
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