English

Quantum fisher information in noninertial frames

Quantum Physics 2014-05-12 v1

Abstract

We investigate the performance of quantum fisher information under the Unruh-Hawking effect, where one of the observers (eg, Rob) is uniformly accelerated with respect to other partners. In the context of relativistic quantum information theory, we demonstrate that quantum fisher information, as an important measure of the information content of quantum states, has a rich and subtle physical structure comparing with entanglement or Bell nonlocality. In this work, we mainly focus on the parameterized (and arbitrary) pure two-qubit states, where the weight parameter θ\theta and phase parameter ϕ\phi are naturally introduced. Intriguingly, we prove that Fθ\mathcal{F}_\theta keeps unchanged for both scalar and Dirac fields. Meanwhile, we observe that Fϕ\mathcal{F}_\phi decreases with the increase of acceleration rr but remains finite in the limit of infinite acceleration. More importantly, our results show that the symmetry of Fϕ\mathcal{F}_\phi (with respect to θ=π/4\theta=\pi/4) has been broken by the influence of Unruh effect for both cases.

Keywords

Cite

@article{arxiv.1401.0596,
  title  = {Quantum fisher information in noninertial frames},
  author = {Yao Yao and Xing Xiao and Li Ge and Xiao-guang Wang and Chang-pu Sun},
  journal= {arXiv preprint arXiv:1401.0596},
  year   = {2014}
}

Comments

7 pages, 3 figures. Comments are welcome!

R2 v1 2026-06-22T02:38:35.750Z