Analytical characterization of the genuine multiparticle negativity
arXiv:1401.2424 · doi:10.1088/1751-8113/47/15/155301
Abstract
The genuine multiparticle negativity is a measure of genuine multiparticle entanglement which can be computed numerically. We present several results how this entanglement measure can be characterized analytically. First, we show that with an appropriate normalization this measure can be seen as coming from a mixed convex roof construction. Based on this, we determine its value for -qubit GHZ-diagonal states and four-qubit cluster-diagonal states.
23 Pages Appendix included, version 2 contains only minor changes
References in corpus (11)
- General Monogamy Inequality for Bipartite Qubit Entanglement
- Taming multiparticle entanglement
- Concurrence of arbitrary dimensional bipartite quantum states
- Measure of genuine multipartite entanglement with computable lower bounds
- Quantifying Entanglement with Witness Operators
- The structure of multidimensional entanglement in multipartite systems
- Genuinely Multipartite Concurrence of N-qubit X-matrices
- Determining lower bounds on a measure of multipartite entanglement from few local observables
- Disentangling Theorem and Monogamy for Entanglement Negativity
- Triple Compton effect: A photon splitting into three upon collision with a free electron
- Theoretical study of the Compton effect with correlated three-photon emission: From the differential cross section to high-energy triple-photon entanglement
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- Uncertainty relations with the variance and the quantum Fisher information based on convex decompositions of density matrices
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- Measurement of Identical Particle Entanglement and the Influence of Antisymmetrisation
- Partial transpose as a direct link between concurrence and negativity
- Dynamics of genuine multipartite entanglement under local non-Markovian dephasing
- Local quantum uncertainty for multipartite quantum systems
- Detecting genuine multipartite entanglement via machine learning
- Sudden change in dynamics of genuine multipartite entanglement of cavity-reservoir qubits
- Exact solvability, non-integrability, and genuine multipartite entanglement dynamics of the Dicke model
- Numerical and analytical results for geometric measure of coherence and geometric measure of entanglement
- Qubit-Qutrit () quantum systems: An investigation of some quantum correlations under collective dephasing
- Analytical solutions and genuine multipartite entanglement of the three-qubit Dicke model
- Accessible quantification of multiparticle entanglement
- Genuine multipartite entanglement verification with convolutional neural networks
- Accessible bounds for general quantum resources
- Partial Transpose Moments, Principal Minors and Entanglement Detection
- Multipartite entanglement sudden death and birth in randomized hypergraph states
- Genuine entanglement under squeezed generalized amplitude damping channels with memory
- Detection of entanglement via moments of positive maps
- Analysing multiparticle quantum states