Quantum Tomography of Rydberg Atom Graphs by Configurable Ancillas

IF 9.3 Q1 PHYSICS, APPLIED PRX quantum : a Physical Review journal Pub Date : 2022-11-15 DOI:10.1103/prxquantum.4.020316
Kangheun Kim, Jaewook Ahn
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引用次数: 1

Abstract

Tomographic reconstruction of the many-body quantum state of a scalable qubit system is of paramount importance in quantum computing technologies. However, conventional approaches which use tomographically orthogonal base measurements require precise and individual qubit controls which are often experimentally daunting. Here, we propose, as a quantum-mechanically robust alternative, to use configurable ancillas of which the continuously-tunable interactions can generate independent base measurements tomographically sufficient for the quantum state reconstruction of the system of interest. Experimental tests are performed for Rydberg atom arrays in $N$-body $W$ states, of which the results demonstrate reliable high-fidelity full quantum state reconstruction of the proposed method.
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基于可配置分支的Rydberg原子图的量子层析成像
可伸缩量子位系统的多体量子态的层析重建在量子计算技术中至关重要。然而,使用断层正交基底测量的传统方法需要精确和单独的量子位控制,这通常在实验上是令人生畏的。在这里,我们建议,作为一种量子力学稳健的替代方案,使用可配置的辅助系统,其连续可调的相互作用可以在断层上产生足够用于感兴趣系统的量子态重建的独立基础测量。对$N$-body$W$态的里德伯原子阵列进行了实验测试,结果证明了该方法的高保真度全量子态重构是可靠的。
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CiteScore
14.60
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0.00%
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