Einstein-Podolsky-Rosen steering: Its geometric quantification and witness
arXiv:1709.06703 · doi:10.1103/PhysRevA.97.022338
Abstract
We propose a measure of quantum steerability, namely a convex steering monotone, based on the trace distance between a given assemblage and its corresponding closest assemblage admitting a local-hidden-state (LHS) model. We provide methods to estimate such a quantity, via lower and upper bounds, based on semidefinite programming. One of these upper bounds has a clear geometrical interpretation as a linear function of rescaled Euclidean distances in the Bloch sphere between the normalized quantum states of: (i) a given assemblage and (ii) an LHS assemblage. For a qubit-qubit quantum state, the above ideas also allow us to visualize various steerability properties of the state in the Bloch sphere via the so-called LHS surface. In particular, some steerability properties can be obtained by comparing such an LHS surface with a corresponding quantum steering ellipsoid. Thus, we propose a witness of steerability corresponding to the difference of the volumes enclosed by these two surfaces. This witness (which reveals the steerability of a quantum state) enables finding an optimal measurement basis, which can then be used to determine the proposed steering monotone (which describes the steerability of an assemblage) optimized over all mutually-unbiased bases.
References in corpus (13)
- Steering, Entanglement, Nonlocality, and the EPR Paradox
- Experimental criteria for steering and the Einstein-Podolsky-Rosen paradox
- Einstein-Podolsky-Rosen steering provides the advantage in entanglement-assisted subchannel discrimination with one-way measurements
- Quantification of Gaussian quantum steering
- Observation of one-way Einstein-Podolsky-Rosen steering
- Joint measurability of generalized measurements implies classicality
- Genuine High-Order Einstein-Podolsky-Rosen Steering
- Einstein-Podolsky-Rosen steering and the steering ellipsoid
- Quantum steering ellipsoids, extremal physical states and monogamy
- Quantifying Bell non-locality with the trace distance
- Quantum steerability: characterization, quantification, superactivation and unbounded amplification
- Temporal Steering in Four Dimensions with applications to coupled qubits and magnetoreception
- Einstein-Podolsky-Rosen Steering and Quantum Steering Ellipsoids: Optimal Two-Qubit States and Projective Measurements
Cited by in corpus (26)
- Quantum Steering
- Experimental demonstration of measurement-device-independent measure of quantum steering
- Quantifying Quantumness of Channels Without Entanglement
- Complete classification of steerability under local filters and its relation with measurement incompatibility
- Robust self-testing of steerable quantum assemblages and its applications on device-independent quantum certification
- Nonlocality, quantum correlations, and violations of classical realism in the dynamics of two noninteracting quantum walkers
- Experimental hierarchy and optimal robustness of quantum correlations of two-qubit states with controllable white noise
- Exploring the framework of assemblage moment matrices and its applications in device-independent characterizations
- Deep learning the hierarchy of steering measurement settings of qubit-pair states
- Thermodynamic Approach to Quantifying Incompatible Instruments
- Unveiling quantum steering by quantum-classical uncertainty complementarity
- Distance-based resource quantification for sets of quantum measurements
- Distributed quantum incompatibility
- Accelerating multipartite entanglement generation in non-Hermitian superconducting qubits
- Measuring network quantum steerability utilizing artificial neural networks
- Role of maximally entangled states in the context of linear steering inequalities
- Maximal violation of steering inequalities and the matrix cube
- Entanglement balance of quantum scattering processes
- Quantifying Quantum Steering with Limited Resources: A Semi-supervised Machine Learning Approach
- Locally inaccessible hidden quantum correlations
- Operational simultaneous correlations in complementary bases of bipartite states via one-sided semi-device-independent steering
- Measurement-device-independent measure of steerability and witnesses for all steerable resources
- Comparing coherence measures for X states: Can quantum states be ordered based on quantum coherence?
- Operational Coherent Measurements with Steering and Randomness
- Protection of quantum steering ellipsoids in non-Markovian environments
- Asymmetric steerability of quantum equilibrium and nonequilibrium steady states through entanglement detection