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摘要:
The study of quantum channels is an important field and promises a wide range of applications, because any physical process can be represented as a quantum channel that transforms an initial state into a final state. Inspired by the method of performing non-unitary operators by the linear combination of unitary operations, we proposed a quantum algorithm for the simulation of the universal single-qubit channel, described by a convex combination of "quasi-extreme" channels corresponding to four Kraus operators, and is scalable to arbitrary higher dimension. We demonstrated the whole algorithm experimentally using the universal IBM cloud-based quantum computer and studied the properties of different qubit quantum channels. We illustrated the quantum capacity of the general qubit quantum channels, which quantifies the amount of quantum information that can be protected. The behavior of quantum capacity in different channels revealed which types of noise processes can support information transmission, and which types are too destructive to protect information. There was a general agreement between the theoretical predictions and the experiments, which strongly supports our method. By realizing the arbitrary qubit channel, this work provides a universally-accepted way to explore various properties of quantum channels and novel prospect for quantum communication.
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篇名 Efficient universal quantum channel simulation in IBM's cloud quantum computer
来源期刊 中国科学:物理学 力学 天文学(英文版) 学科
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年,卷(期) 2018,(7) 所属期刊栏目
研究方向 页码范围 44-53
页数 10页 分类号
字数 语种 英文
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中国科学:物理学 力学 天文学(英文版)
月刊
1674-7348
11-5849/N
16开
北京东黄城根北街16号
80-212
2004
eng
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3714
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10002
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