Optimal Entanglement Certification from Moments of the Partial Transpose
arXiv:2103.06897 · doi:10.1103/PhysRevLett.127.060504
Abstract
For the certification and benchmarking of medium-size quantum devices efficient methods to characterize entanglement are needed. In this context, it has been shown that locally randomized measurements on a multiparticle quantum system can be used to obtain valuable information on the so-called moments of the partially transposed quantum state. This allows one to infer some separability properties of a state, but how to use the given information in an optimal and systematic manner has yet to be determined. We propose two general entanglement detection methods based on the moments of the partially transposed density matrix. The first method is based on the Hankel matrices and provides a family of entanglement criteria, of which the lowest order reduces to the known -PPT criterion proposed in A. Elben et al. [Phys. Rev. Lett. 125, 200501 (2020)]. The second method is optimal and gives necessary and sufficient conditions for entanglement based on some moments of the partially transposed density matrix.
16 pages, 2 figures, close to the published version. See also the related work by A. Neven et al. arXiv:2103.07443
References in corpus (6)
- Entanglement detection
- Experimental Quantum State Tomography of Optical Fields and Ultrafast Statistical Sampling
- Entanglement Certification From Theory to Experiment
- Taming multiparticle entanglement
- Symmetry-resolved entanglement detection using partial transpose moments
- Bounds on general entropy measures
Cited by in corpus (52)
- The randomized measurement toolbox
- Symmetry-resolved entanglement detection using partial transpose moments
- Quantum Fisher information from randomized measurements
- Probing many-body quantum chaos with quantum simulators
- Genuine multipartite entanglement measure
- Machine learning discovery of new phases in programmable quantum simulator snapshots
- Detecting entanglement in quantum many-body systems via permutation moments
- The quantum Mpemba effect in free-fermionic mixed states
- Analysing quantum systems with randomised measurements
- Robust estimation of the Quantum Fisher Information on a quantum processor
- Performance analysis of multi-shot shadow estimation
- Fundamental Limitation on the Detectability of Entanglement
- A randomized measurement toolbox for an interacting Rydberg-atom quantum simulator
- Experimental violations of Leggett-Garg's inequalities on a quantum computer
- Entanglement detection in arbitrary dimensional bipartite quantum systems through partial realigned moments
- Enhanced estimation of quantum properties with common randomized measurements
- Estimating Quantum Hamiltonians via Joint Measurements of Noisy Non-Commuting Observables
- Collective randomized measurements in quantum information processing
- Operational Entanglement Detection Based on -Moments
- Quantum separability criteria based on realignment moments
- Krylov shadow tomography: Efficient estimation of quantum Fisher information
- Many-body entropies and entanglement from polynomially-many local measurements
- When is a Genuine Multipartite Entanglement Measure Monogamous?
- Assessing non-Markovian dynamics through moments of the Choi state
- Entanglement phase diagrams from partial transpose moments
- Entanglement Criteria Based on Quantum Fisher Information
- Higher-dimensional entanglement detection and quantum channel characterization using moments of generalized positive maps
- Certifying Quantum Temporal Correlation via Randomized Measurements: Theory and Experiment
- Efficient witnessing and testing of magic in mixed quantum states
- Efficient detection of nonclassicality using moments of the Wigner function
- Partial Transpose Moments, Principal Minors and Entanglement Detection
- A characterization of entangled two-qubit states via partial-transpose-moments
- Physical realization of realignment criteria using structural physical approximation
- A characterization of maximally entangled two-qubit states
- Criteria of genuine multipartite entanglement based on correlation tensors
- Detecting genuine multipartite entanglement using moments of positive maps
- Real randomized measurements for analyzing properties of quantum states
- Visualization of all two-qubit states via partial-transpose-moments
- Detection of entanglement via moments of positive maps
- Detecting high-dimensional entanglement by randomized product projections
- Separability criteria based on the correlation tensor moments for arbitrary dimensional states
- Variational-toolbox-based separability detection of multiqubit states
- Probing Kirkwood-Dirac nonpositivity and its operational implications via moments
- Entanglement certification from moments of positive maps
- An Effective Way to Determine the Separability of Quantum State
- Virtual Cloning of Quantum States
- Detection of nonabsolute separability in quantum states and channels through moments
- Scalable protocol to coherence estimation from scarce data: Theory and experiment
- Certifying entanglement dimensionality by -reduction moments
- Detecting strongly non-Gaussian entanglement
- Bell sampling in Quantum Monte Carlo simulations
- Detecting entanglement from few partial transpose moments and their decay via weight enumerators