Quantum partial coherence measures constructed from Fisher information
- URL: http://arxiv.org/abs/2411.08368v1
- Date: Wed, 13 Nov 2024 06:36:58 GMT
- Title: Quantum partial coherence measures constructed from Fisher information
- Authors: Dong-Ping Xuan, Zhong-Xi Shen, Wen Zhou, Hua Nan, Shao-Ming Fei, Zhi-Xi Wang,
- Abstract summary: We introduce the measures of partial coherence based on (quantum) Fisher information.
These partial coherence measures present a clear operational interpretation.
We provide an analytical expression for the partial coherence measure of two-qubit states.
- Score: 1.0618343843580351
- License:
- Abstract: Quantum mechanics gives a new breakthrough to the field of parameter estimation. In the realm of quantum metrology, the precision of parameter estimation is limited by the quantum Fisher information. We introduce the measures of partial coherence based on (quantum) Fisher information by taking into account the post-selective non-unitary parametrization process. These partial coherence measures present a clear operational interpretation by directly linking the coherence to the parameter estimation accuracy. Furthermore, we explore the distinctions between our partial coherence measure and the quantum Fisher information within the context of unitary parametrization. We provide an analytical expression for the partial coherence measure of two-qubit states. We elucidate the operational significance of the partial coherence measures by establishing the connections between the partial coherence measures and quantum state discrimination.
Related papers
- Fisher information susceptibility for multiparameter quantum estimation [0.23436632098950458]
Noise affects the performance of quantum technologies, hence the importance of elaborating operative figures of merit.
In quantum metrology, the introduction of the Fisher information measurement noise susceptibility now allows to quantify the robustness of measurement.
We provide its mathematical definition in the form of a semidefinite program.
arXiv Detail & Related papers (2023-12-04T16:54:01Z) - Enhanced Entanglement in the Measurement-Altered Quantum Ising Chain [46.99825956909532]
Local quantum measurements do not simply disentangle degrees of freedom, but may actually strengthen the entanglement in the system.
This paper explores how a finite density of local measurement modifies a given state's entanglement structure.
arXiv Detail & Related papers (2023-10-04T09:51:00Z) - Error tradeoff relation for estimating the unitary-shift parameter of a
relativistic spin-1/2 particle [20.44391436043906]
The purpose of this paper is to discuss the existence of a nontrivial tradeoff relation for estimating two unitary-shift parameters in a relativistic spin-1/2 system.
It is shown that any moving observer cannot estimate two parameters simultaneously, even though a parametric model is classical in the rest frame.
arXiv Detail & Related papers (2023-08-01T17:07:29Z) - Quantifying measurement-induced quantum-to-classical crossover using an
open-system entanglement measure [49.1574468325115]
We study the entanglement of a single particle under continuous measurements.
We find that the entanglement at intermediate time scales shows the same qualitative behavior as a function of the measurement strength.
arXiv Detail & Related papers (2023-04-06T09:45:11Z) - Quantifying coherence in terms of Fisher information [0.0]
In quantum metrology, the parameter estimation accuracy is bounded by quantum Fisher information.
We present coherence measures in terms of (quantum) Fisher information by considering the post-selective non-unitary parametrization process.
arXiv Detail & Related papers (2022-07-29T15:38:54Z) - Moderate deviation expansion for fully quantum tasks [20.30365614522286]
The moderate deviation regime is concerned with the finite block length trade-off between communication cost and error for information processing tasks.
We find exact characterisations of these trade-offs for a variety of fully quantum communication tasks.
arXiv Detail & Related papers (2021-12-14T05:15:22Z) - Incompatibility measures in multi-parameter quantum estimation under
hierarchical quantum measurements [4.980960723762946]
We show an approach to study the incompatibility under general $p$-local measurements.
We demonstrate the power of the approach by presenting a hierarchy of analytical bounds on the tradeoff.
arXiv Detail & Related papers (2021-09-13T09:33:47Z) - Incorporating Heisenberg's Uncertainty Principle into Quantum
Multiparameter Estimation [0.44237366129994526]
We find a correspondence relationship between the inaccuracy of a measurement for estimating the unknown parameter with the measurement error.
For pure quantum states, this tradeoff relation is tight, so it can reveal the true quantum limits on individual estimation errors.
We show that our approach can be readily used to derive the tradeoff between the errors of jointly estimating the phase shift and phase diffusion.
arXiv Detail & Related papers (2020-08-20T10:56:45Z) - Uncertainty and Trade-offs in Quantum Multiparameter Estimation [0.0]
Uncertainty relations in quantum mechanics express bounds on our ability to simultaneously obtain knowledge about expectation values of non-commuting observables of a quantum system.
They quantify trade-offs in accuracy between complementary pieces of information about the system.
An uncertainty relation emerges between achievable variances of the different estimators.
arXiv Detail & Related papers (2020-02-14T10:43:40Z) - In and out of equilibrium quantum metrology with mean-field quantum
criticality [68.8204255655161]
We study the influence that collective transition phenomena have on quantum metrological protocols.
The single spherical quantum spin (SQS) serves as stereotypical toy model that allows analytical insights on a mean-field level.
arXiv Detail & Related papers (2020-01-09T19:20:42Z) - Direct estimation of quantum coherence by collective measurements [54.97898890263183]
We introduce a collective measurement scheme for estimating the amount of coherence in quantum states.
Our scheme outperforms other estimation methods based on tomography or adaptive measurements.
We show that our method is accessible with today's technology by implementing it experimentally with photons.
arXiv Detail & Related papers (2020-01-06T03:50:42Z)
This list is automatically generated from the titles and abstracts of the papers in this site.
This site does not guarantee the quality of this site (including all information) and is not responsible for any consequences.