Control incompatibility in multiparameter quantum metrology

Fuente: arXiv
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Main Authors: Hu, Zhiyao, Wang, Shilin, Qiao, Linmu, Isogawa, Takuya, Li, Changhao, Yang, Yu, Wang, Guoqing, Yuan, Haidong, Cappellaro, Paola
Format: Preprint
Published: 2024
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author Hu, Zhiyao
Wang, Shilin
Qiao, Linmu
Isogawa, Takuya
Li, Changhao
Yang, Yu
Wang, Guoqing
Yuan, Haidong
Cappellaro, Paola
author_facet Hu, Zhiyao
Wang, Shilin
Qiao, Linmu
Isogawa, Takuya
Li, Changhao
Yang, Yu
Wang, Guoqing
Yuan, Haidong
Cappellaro, Paola
contents In practical applications like quantum sensing and quantum imaging, there is often a necessity to estimate multiple parameters simultaneously. Although the ultimate precision limits for single-parameter estimation are well established, the precision limit of multi-parameter estimation is much less understood. This is primarily due to the inherent incompatibility of the optimal strategies for the estimation of different parameters, particularly those pertaining to optimal control.In this study, we tackle the critical issue of control incompatibility in multi-parameter estimation by presenting explicit cases that expose this challenge. Our research not only pioneers the exploration of control incompatibility but also highlights its pivotal role in the field. Furthermore, our work offers valuable insights into how to minimize trade-offs induced by control incompatibility and enhance precision. This paves the way for future investigations into control strategies that enable optimal estimation of multiple parameters that are incompatible.
format Preprint
id arxiv_https___arxiv_org_abs_2411_18896
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Control incompatibility in multiparameter quantum metrology
Hu, Zhiyao
Wang, Shilin
Qiao, Linmu
Isogawa, Takuya
Li, Changhao
Yang, Yu
Wang, Guoqing
Yuan, Haidong
Cappellaro, Paola
Quantum Physics
In practical applications like quantum sensing and quantum imaging, there is often a necessity to estimate multiple parameters simultaneously. Although the ultimate precision limits for single-parameter estimation are well established, the precision limit of multi-parameter estimation is much less understood. This is primarily due to the inherent incompatibility of the optimal strategies for the estimation of different parameters, particularly those pertaining to optimal control.In this study, we tackle the critical issue of control incompatibility in multi-parameter estimation by presenting explicit cases that expose this challenge. Our research not only pioneers the exploration of control incompatibility but also highlights its pivotal role in the field. Furthermore, our work offers valuable insights into how to minimize trade-offs induced by control incompatibility and enhance precision. This paves the way for future investigations into control strategies that enable optimal estimation of multiple parameters that are incompatible.
title Control incompatibility in multiparameter quantum metrology
topic Quantum Physics
url https://arxiv.org/abs/2411.18896