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Main Authors: Zhao, Jun-Long, Yu, Li, Yang, Ming, Yang, Chui-Ping
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2510.25457
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author Zhao, Jun-Long
Yu, Li
Yang, Ming
Yang, Chui-Ping
author_facet Zhao, Jun-Long
Yu, Li
Yang, Ming
Yang, Chui-Ping
contents Quantum metrology is a science about quantum measurements and it plays a key role in precision of quantum parameter estimation. Meanwhile, quantum coherence is an important quantum feature and quantum Fisher information (QFI) is an important indicator for precision of quantum parameter estimation. In this paper, we explore the relationship between QFI and quantum coherence in multi-dimensional quantum systems. We introduce a new concept referred to as General Quantum Coherence (GQC), which characterizes the quantum coherence and the eigenenergies of the Hamiltonian in the interaction processes. GQC captures quantum nature of high-dimensional quantum states and addresses shortcomings in coherence measurement. Additionally, we observe a stringent square relationship between GQC and QFI. This finding provides a crucial guideline for improving the precision of parameter estimation.
format Preprint
id arxiv_https___arxiv_org_abs_2510_25457
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Quantum Fisher Information With General Quantum Coherence in multi-dimensional quantum systems
Zhao, Jun-Long
Yu, Li
Yang, Ming
Yang, Chui-Ping
Quantum Physics
Quantum metrology is a science about quantum measurements and it plays a key role in precision of quantum parameter estimation. Meanwhile, quantum coherence is an important quantum feature and quantum Fisher information (QFI) is an important indicator for precision of quantum parameter estimation. In this paper, we explore the relationship between QFI and quantum coherence in multi-dimensional quantum systems. We introduce a new concept referred to as General Quantum Coherence (GQC), which characterizes the quantum coherence and the eigenenergies of the Hamiltonian in the interaction processes. GQC captures quantum nature of high-dimensional quantum states and addresses shortcomings in coherence measurement. Additionally, we observe a stringent square relationship between GQC and QFI. This finding provides a crucial guideline for improving the precision of parameter estimation.
title Quantum Fisher Information With General Quantum Coherence in multi-dimensional quantum systems
topic Quantum Physics
url https://arxiv.org/abs/2510.25457