A simple analytical expression of quantum Fisher and Skew information
and their dynamics under decoherence channels
- URL: http://arxiv.org/abs/2209.15593v2
- Date: Sun, 15 Jan 2023 11:19:34 GMT
- Title: A simple analytical expression of quantum Fisher and Skew information
and their dynamics under decoherence channels
- Authors: Nour-Eddine Abouelkhir, Hanane EL Hadfi, Abdallah Slaoui and Rachid
Ahl Laamara
- Abstract summary: The Wigner-Yanase skew information is bounded by the quantum Fisher information associated with the phase parameter.
The quantum Cram'er-Rao inequality is expressed in terms of skew information.
A comparison of these two informational quantifiers for two quasi-Werner states composed of two bipartite superposed coherent states is examined.
- Score: 0.0
- License: http://creativecommons.org/publicdomain/zero/1.0/
- Abstract: In statistical estimation theory, it has been shown previously that the
Wigner-Yanase skew information is bounded by the quantum Fisher information
associated with the phase parameter. Besides, the quantum Cram\'er-Rao
inequality is expressed in terms of skew information. Since these two
fundamental quantities are based on the concept of quantum uncertainty, we
derive here their analytical formulas for arbitrary two qubit $X$-states using
the same analytical procedures. A comparison of these two informational
quantifiers for two quasi-Werner states composed of two bipartite superposed
coherent states is examined. Moreover, we investigated the decoherence effects
on such quantities generated by the phase damping, depolarization and amplitude
damping channels. We showed that decoherence strongly influences the quantum
criteria during the evolution and these quantities exhibit similar dynamic
behaviors. This current work is characterized by the fact that these two
concepts play the same role and capture similar properties in quantum
estimation protocols.
Related papers
- Steered quantum coherence and quantum Fisher information in spin-chain
system [0.0]
We investigate steered quantum coherence, the relative entropy of steered coherence, and the quantum Fisher information in the Gibbs state of two-qubit $XXZ$ systems.
Their variations with respect to the temperature, external magnetic field, and interaction intensities are analyzed.
arXiv Detail & Related papers (2023-12-15T04:45:24Z) - 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) - 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) - Quantum ensembles and the statistical operator: a tutorial [0.0]
This tutorial is to elucidate in details what should be meant by ensemble of states in quantum mechanics.
We review the notion and the definition of quantum ensemble as well as its relationships with the concept of statistical operator in quantum mechanics.
arXiv Detail & Related papers (2022-12-26T07:12:52Z) - Quantum state inference from coarse-grained descriptions: analysis and
an application to quantum thermodynamics [101.18253437732933]
We compare the Maximum Entropy Principle method, with the recently proposed Average Assignment Map method.
Despite the fact that the assigned descriptions respect the measured constraints, the descriptions differ in scenarios that go beyond the traditional system-environment structure.
arXiv Detail & Related papers (2022-05-16T19:42:24Z) - Enhancing the estimation precision of an unknown phase shift in
multipartite Glauber coherent states via skew information correlations and
local quantum Fisher information [0.0]
Local quantum uncertainty (LQU) and local quantum Fisher information (LQFI) are two tools used to capture purely quantum correlations in multi-partite quantum systems.
We study these quantifiers in the case of multipartite Glauber coherent state which include the GHZ (Greenberger-Horne-Zeilinger) and Werner states.
arXiv Detail & Related papers (2021-10-18T15:55:19Z) - Uncover quantumness in the crossover from BEC to quantum-correlated
phase [0.0]
We examine the role of the quantum entanglement of an assembly of two-level emitters coupled to a single-mode cavity.
This allows us to characterise the quantum correlated state for each regime.
arXiv Detail & Related papers (2021-01-18T05:06:59Z) - Experimental Validation of Fully Quantum Fluctuation Theorems Using
Dynamic Bayesian Networks [48.7576911714538]
Fluctuation theorems are fundamental extensions of the second law of thermodynamics for small systems.
We experimentally verify detailed and integral fully quantum fluctuation theorems for heat exchange using two quantum-correlated thermal spins-1/2 in a nuclear magnetic resonance setup.
arXiv Detail & Related papers (2020-12-11T12:55:17Z) - Quantum Fisher information and skew information correlations in dipolar
spin system [1.5630592429258865]
Quantum Fisher information (QFI) and skew information (SI) plays a key role in the quantum resource theory.
We consider a pair ofspin-1/2 particles coupled with dipolar and Dzyaloshinsky-Moriya (DM) interactions, serving as the physical carrier of quantum information.
arXiv Detail & Related papers (2020-11-11T16:18:11Z) - Quantum Statistical Complexity Measure as a Signalling of Correlation
Transitions [55.41644538483948]
We introduce a quantum version for the statistical complexity measure, in the context of quantum information theory, and use it as a signalling function of quantum order-disorder transitions.
We apply our measure to two exactly solvable Hamiltonian models, namely: the $1D$-Quantum Ising Model and the Heisenberg XXZ spin-$1/2$ chain.
We also compute this measure for one-qubit and two-qubit reduced states for the considered models, and analyse its behaviour across its quantum phase transitions for finite system sizes as well as in the thermodynamic limit by using Bethe ansatz.
arXiv Detail & Related papers (2020-02-05T00:45:21Z) - 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)
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.