False Positives Raised by Quantum Readout Error Mitigation

Fuente: arXiv
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Autori principali: Guo, Yibin, Fan, Yi, Liu, Pei, Zhao, Shoukuan, Jin, Yirong, Cai, Xiaoxia, Zeng, Xiongzhi, Li, Zhenyu, Zhang, Wengang, Yu, Hai-Feng
Natura: Preprint
Pubblicazione: 2025
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author Guo, Yibin
Fan, Yi
Liu, Pei
Zhao, Shoukuan
Jin, Yirong
Cai, Xiaoxia
Zeng, Xiongzhi
Li, Zhenyu
Zhang, Wengang
Yu, Hai-Feng
author_facet Guo, Yibin
Fan, Yi
Liu, Pei
Zhao, Shoukuan
Jin, Yirong
Cai, Xiaoxia
Zeng, Xiongzhi
Li, Zhenyu
Zhang, Wengang
Yu, Hai-Feng
contents Quantum readout error mitigation is essential for noisy intermediate-scale quantum devices to achieve reliable data. The conventional approaches, conflating initialization errors with measurement errors, not only suppress the influence of measurement errors, but also strengthen that of initialization errors, which is a systematic bias grows exponentially with the qubit number. Here, we have proved that this effect causes severe fidelity overestimation for all stabilizer states and might lead to false positives in large-scale entangled state characterization. Similarly, the results from algorithms like the variational quantum eigensolver and time evolution also deviate negatively, and cover up other errors in the quantum circuit. These findings highlight the critical need for rigorous benchmarking and careful management of initialization errors. Consequently, we establish an upper bound for the tolerable initialization error rate to ensure effective error mitigation at a given system scale.
format Preprint
id arxiv_https___arxiv_org_abs_2510_08687
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle False Positives Raised by Quantum Readout Error Mitigation
Guo, Yibin
Fan, Yi
Liu, Pei
Zhao, Shoukuan
Jin, Yirong
Cai, Xiaoxia
Zeng, Xiongzhi
Li, Zhenyu
Zhang, Wengang
Yu, Hai-Feng
Quantum Physics
Quantum readout error mitigation is essential for noisy intermediate-scale quantum devices to achieve reliable data. The conventional approaches, conflating initialization errors with measurement errors, not only suppress the influence of measurement errors, but also strengthen that of initialization errors, which is a systematic bias grows exponentially with the qubit number. Here, we have proved that this effect causes severe fidelity overestimation for all stabilizer states and might lead to false positives in large-scale entangled state characterization. Similarly, the results from algorithms like the variational quantum eigensolver and time evolution also deviate negatively, and cover up other errors in the quantum circuit. These findings highlight the critical need for rigorous benchmarking and careful management of initialization errors. Consequently, we establish an upper bound for the tolerable initialization error rate to ensure effective error mitigation at a given system scale.
title False Positives Raised by Quantum Readout Error Mitigation
topic Quantum Physics
url https://arxiv.org/abs/2510.08687