Multiqubit entanglement of a general input state

被引:0
|
作者
Behrman, Elizabeth C. [1 ]
Steck, James E. [2 ]
机构
[1] Department of Mathematics and Physics, Wichita State University, Wichita, KS 67260-0033, United States
[2] Department of Aerospace Engineering, Wichita State University, Wichita, KS 67260-0044, United States
来源
Quantum Information and Computation | 2013年 / 13卷 / 1-2期
关键词
Quantum computers - Learning systems - Quantum entanglement;
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摘要
Measurement of entanglement remains an important problem for quantum information. We present the design and simulation of an experimental method for an entanglement indicator for a general multiqubit state. The system can be in a pure or a mixed state, and it need not be close to any particular state. The system contains information about its own entanglement; we use dynamic learning methods to map this information onto a single experimental measurement which is our entanglement indicator. Our method does not require prior state reconstruction or lengthy optimization. An entanglement witness emerges from the learning process, beginning with two-qubit systems, and extrapolating this to three, four, and five qubit systems where the entanglement is not well understood. Our independently learned measures for three-qubit systems compare favorably with known entanglement measures. As the size of the system grows the amount of additional training necessary diminishes, raising hopes for applicability to large computational systems. © Rinton Press.
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页码:0036 / 0053
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