Unveiling quantum steering by quantum-classical uncertainty complementarity

Fuente: arXiv
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Main Authors: Lee, Kuan-Yi, Lin, Jhen-Dong, Lemr, Karel, Černoch, Antonín, Miranowicz, Adam, Nori, Franco, Ku, Huan-Yu, Chen, Yueh-Nan
Format: Preprint
Published: 2023
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author Lee, Kuan-Yi
Lin, Jhen-Dong
Lemr, Karel
Černoch, Antonín
Miranowicz, Adam
Nori, Franco
Ku, Huan-Yu
Chen, Yueh-Nan
author_facet Lee, Kuan-Yi
Lin, Jhen-Dong
Lemr, Karel
Černoch, Antonín
Miranowicz, Adam
Nori, Franco
Ku, Huan-Yu
Chen, Yueh-Nan
contents One of the remarkable aspects of quantum steering is its ability to violate local uncertainty complementarity relations. In this vein of study, various steering witnesses have been developed. Here, we introduce a novel complementarity relation between system's quantum and classical uncertainties corresponding to the distillable coherence and the von-Neumann entropy, respectively. We show that the proposed complementarity relation is tighter than the entropic uncertainty relation (EUR). Leveraging this result, we propose a steering witness that is more efficient than the EUR. From the operational perspective, the steering witness quantifies the amount of extra distillable coherence facilitated by quantum steerability. Notably, the proposed steering witness serves as a full entanglement measure for pure bipartite states--an ability that the EUR lacks. We also experimentally validate such a property through a photonic system. Furthermore, a deeper connection to the uncertainty principle is revealed by showcasing the steering-induced distillable coherence can quantifies measurement incompatibility and quantum steerability under genuine incoherent operations. Our work establishes a clear quantitative and operational link between coherence and steering, which are vital resources of quantum technologies, and underscores our efforts in bridging the uncertainty principle with quantum coherence.
format Preprint
id arxiv_https___arxiv_org_abs_2312_01055
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Unveiling quantum steering by quantum-classical uncertainty complementarity
Lee, Kuan-Yi
Lin, Jhen-Dong
Lemr, Karel
Černoch, Antonín
Miranowicz, Adam
Nori, Franco
Ku, Huan-Yu
Chen, Yueh-Nan
Quantum Physics
One of the remarkable aspects of quantum steering is its ability to violate local uncertainty complementarity relations. In this vein of study, various steering witnesses have been developed. Here, we introduce a novel complementarity relation between system's quantum and classical uncertainties corresponding to the distillable coherence and the von-Neumann entropy, respectively. We show that the proposed complementarity relation is tighter than the entropic uncertainty relation (EUR). Leveraging this result, we propose a steering witness that is more efficient than the EUR. From the operational perspective, the steering witness quantifies the amount of extra distillable coherence facilitated by quantum steerability. Notably, the proposed steering witness serves as a full entanglement measure for pure bipartite states--an ability that the EUR lacks. We also experimentally validate such a property through a photonic system. Furthermore, a deeper connection to the uncertainty principle is revealed by showcasing the steering-induced distillable coherence can quantifies measurement incompatibility and quantum steerability under genuine incoherent operations. Our work establishes a clear quantitative and operational link between coherence and steering, which are vital resources of quantum technologies, and underscores our efforts in bridging the uncertainty principle with quantum coherence.
title Unveiling quantum steering by quantum-classical uncertainty complementarity
topic Quantum Physics
url https://arxiv.org/abs/2312.01055