Observation of Full Hierarchy of Temporal Quantum Correlations with a Superconducting Qubit

Fuente: arXiv
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Main Authors: Weng, Hao-Cheng, Wei, Chen-Yeh, Ku, Huan-Yu, Chen, Shin-Liang, Chen, Yueh-Nan, Chuu, Chih-Sung
Format: Preprint
Published: 2025
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author Weng, Hao-Cheng
Wei, Chen-Yeh
Ku, Huan-Yu
Chen, Shin-Liang
Chen, Yueh-Nan
Chuu, Chih-Sung
author_facet Weng, Hao-Cheng
Wei, Chen-Yeh
Ku, Huan-Yu
Chen, Shin-Liang
Chen, Yueh-Nan
Chuu, Chih-Sung
contents Temporal quantum correlations provide an intriguing way of testing quantumness at the macroscopic level, with a logical hierarchy present among the quantum correlations associated with nonmacrorealism, temporal steering, and temporal inseparability. By manipulating the dynamics of a superconducting qubit, we observe the full hierarchy of temporal quantum correlations. Moreover, we show that the rich dynamics of the temporal quantum correlations, such as sudden death or revival of temporal steering, provides a useful and unique measure for benchmarking qubits on a realistic circuit. Our work finds applications in identifying the casual structure in a quantum network, the non-Markovianity of open quantum systems, and the security bounds of quantum key distribution. As an example, we demonstrate the non-Markovianity of a single superconducting qubit on the quantum circuit.
format Preprint
id arxiv_https___arxiv_org_abs_2505_01379
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Observation of Full Hierarchy of Temporal Quantum Correlations with a Superconducting Qubit
Weng, Hao-Cheng
Wei, Chen-Yeh
Ku, Huan-Yu
Chen, Shin-Liang
Chen, Yueh-Nan
Chuu, Chih-Sung
Quantum Physics
Temporal quantum correlations provide an intriguing way of testing quantumness at the macroscopic level, with a logical hierarchy present among the quantum correlations associated with nonmacrorealism, temporal steering, and temporal inseparability. By manipulating the dynamics of a superconducting qubit, we observe the full hierarchy of temporal quantum correlations. Moreover, we show that the rich dynamics of the temporal quantum correlations, such as sudden death or revival of temporal steering, provides a useful and unique measure for benchmarking qubits on a realistic circuit. Our work finds applications in identifying the casual structure in a quantum network, the non-Markovianity of open quantum systems, and the security bounds of quantum key distribution. As an example, we demonstrate the non-Markovianity of a single superconducting qubit on the quantum circuit.
title Observation of Full Hierarchy of Temporal Quantum Correlations with a Superconducting Qubit
topic Quantum Physics
url https://arxiv.org/abs/2505.01379