Entanglement-assisted multiparameter estimation with a solid-state quantum sensor

Fuente: arXiv
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Auteurs principaux: Isogawa, Takuya, Wang, Guoqing, Li, Boning, Hu, Zhiyao, Nishimura, Shunsuke, Kanamoto, Ayumi, Yuan, Haidong, Cappellaro, Paola
Format: Preprint
Publié: 2025
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author Isogawa, Takuya
Wang, Guoqing
Li, Boning
Hu, Zhiyao
Nishimura, Shunsuke
Kanamoto, Ayumi
Yuan, Haidong
Cappellaro, Paola
author_facet Isogawa, Takuya
Wang, Guoqing
Li, Boning
Hu, Zhiyao
Nishimura, Shunsuke
Kanamoto, Ayumi
Yuan, Haidong
Cappellaro, Paola
contents Quantum multiparameter estimation promises to extend quantum advantage to the simultaneous high-precision measurements of multiple physical quantities. However, realizing this capability in practical quantum sensors under realistic conditions remains challenging due to intrinsic system imperfections. Here, we experimentally demonstrate multiparameter estimation using a nitrogen-vacancy (NV) center in diamond, a widely adopted solid-state quantum sensor. Leveraging electronic-nuclear spin entanglement and optimized Bell state measurement at room temperature, we simultaneously estimate the amplitude, detuning, and phase of a microwave drive from a single measurement sequence. Despite practical constraints, our results achieve linear sensitivity scaling for all parameters with respect to interrogation time. This work bridges the gap between foundational quantum estimation theory and real-world quantum sensing, opening pathways toward enhanced multiparameter quantum sensors suitable for diverse scientific and technological applications.
format Preprint
id arxiv_https___arxiv_org_abs_2505_14578
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Entanglement-assisted multiparameter estimation with a solid-state quantum sensor
Isogawa, Takuya
Wang, Guoqing
Li, Boning
Hu, Zhiyao
Nishimura, Shunsuke
Kanamoto, Ayumi
Yuan, Haidong
Cappellaro, Paola
Quantum Physics
Quantum multiparameter estimation promises to extend quantum advantage to the simultaneous high-precision measurements of multiple physical quantities. However, realizing this capability in practical quantum sensors under realistic conditions remains challenging due to intrinsic system imperfections. Here, we experimentally demonstrate multiparameter estimation using a nitrogen-vacancy (NV) center in diamond, a widely adopted solid-state quantum sensor. Leveraging electronic-nuclear spin entanglement and optimized Bell state measurement at room temperature, we simultaneously estimate the amplitude, detuning, and phase of a microwave drive from a single measurement sequence. Despite practical constraints, our results achieve linear sensitivity scaling for all parameters with respect to interrogation time. This work bridges the gap between foundational quantum estimation theory and real-world quantum sensing, opening pathways toward enhanced multiparameter quantum sensors suitable for diverse scientific and technological applications.
title Entanglement-assisted multiparameter estimation with a solid-state quantum sensor
topic Quantum Physics
url https://arxiv.org/abs/2505.14578