Experimenting quantum phenomena on NISQ computers using high level quantum programming

Experimenting quantum phenomena on NISQ computers using high level quantum programming
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DOI:
10.1140/epjqt/s40507-022-00126-1
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发表时间:
2021-11
影响因子:
5.3
通讯作者:
Duc-Manh Tran;Duy V. Nguyen;Bin Ho Le;Hung Q. Nguyen
Duc-Manh Tran;Duy V. Nguyen;Bin Ho Le;Hung Q. Nguyen
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
Duc-Manh Tran;Duy V. Nguyen;Bin Ho Le;Hung Q. Nguyen

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我们执行的量子擦除器,Elitzur-Vaidman炸弹,和哈代的悖论实验使用高级编程语言上的通用,基于门的超导量子处理器由IBM公开提供。用于这些实验的量子电路使用单量子比特和多量子比特门的混合,并且需要高纠缠门精度。结果与量子力学的理论预测一致,对使用多达3个量子位的电路具有高置信度。量子计算机和高级语言作为实验和研究量子现象的平台的力量从此得到了证明。
We execute the quantum eraser, the Elitzur–Vaidman bomb, and the Hardy’s paradox experiment using high-level programming language on a generic, gate-based superconducting quantum processor made publicly available by IBM. The quantum circuits for these experiments use a mixture of one-qubit and multi-qubit gates and require high entanglement gate accuracy. The results aligned with theoretical predictions of quantum mechanics to high confidence on circuits using up to 3 qubits. The power of quantum computers and high-level language as a platform for experimenting and studying quantum phenomena is henceforth demonstrated.