Optimal randomness certification in the quantum steering and prepare-and-measure scenarios
arXiv:1504.08302 · doi:10.1088/1367-2630/17/11/113010
Abstract
Quantum mechanics predicts the existence of intrinsically random processes. Contrary to classical randomness, this lack of predictability can not be attributed to ignorance or lack of control. Here we find the optimal method to quantify the amount of local or global randomness that can be extracted in two scenarios: (i) the quantum steering scenario, where two parties measure a bipartite system in an unknown state but one of them does not trust his measurement apparatus, and (ii) the prepare-and-measure scenario, where additionally the quantum state is known. We use our methods to compute the maximal amount of local and global randomness that can be certified by measuring systems subject to noise and losses and show that local randomness can be certified from a single measurement if and only if the detectors used in the test have detection efficiency higher than 50%.
11 pages, 6 figures. v2: Published version
References in corpus (10)
- Steering, Entanglement, Nonlocality, and the EPR Paradox
- Hacking commercial quantum cryptography systems by tailored bright illumination
- Experimental criteria for steering and the Einstein-Podolsky-Rosen paradox
- Observation of one-way Einstein-Podolsky-Rosen steering
- Multipartite Einstein-Podolsky-Rosen steering and genuine tripartite entanglement with optical networks
- Inequivalence of entanglement, steering, and Bell nonlocality for general measurements
- Joint measurability of generalized measurements implies classicality
- Detection of entanglement in asymmetric quantum networks and multipartite quantum steering
- Genuine High-Order Einstein-Podolsky-Rosen Steering
- Verifying the quantumness of a channel with an untrusted device
Cited by in corpus (79)
- Quantum Steering
- Quantum steering: a review with focus on semidefinite programming
- Maximal randomness expansion from steering inequality violations using qudits
- Rigidity of quantum steering and one-sided device-independent verifiable quantum computation
- Demonstration of Einstein-Podolsky-Rosen Steering Using Hybrid Continuous- and Discrete-Variable Entanglement of Light
- Experimental Measurement-Device-Independent Quantum Steering and Randomness Generation Beyond Qubits
- Semidefinite programming relaxations for quantum correlations
- Most incompatible measurements for robust steering tests
- Quantifying Quantumness of Channels Without Entanglement
- Genuine Einstein-Podolsky-Rosen steering of three-qubit states by multiple sequential observers
- Experimental nonlocality-based randomness generation with non-projective measurements
- A channel-based framework for steering, non-locality and beyond
- Multi-dimensional entanglement generation with multi-core optical fibers
- Detecting Einstein-Podolsky-Rosen steering through entanglement detection
- Randomness Certification from Multipartite Quantum Steering for Arbitrary Dimensional Systems
- Experimental multipartite entanglement and randomness certification of the W state in the quantum steering scenario
- Robust self-testing of steerable quantum assemblages and its applications on device-independent quantum certification
- One-Sided Device-Independent Certification of Unbounded Random Numbers
- Conditional Mutual Information and Quantum Steering
- Semi-device-independent certification of entanglement in superdense coding
- Self-testing of any pure entangled state with minimal number of measurements and optimal randomness certification in one-sided device-independent scenario
- Chirality-induced one-way quantum steering between two waveguide-mediated ferrimagnetic microspheres
- A formalism for steering with local quantum measurements
- Necessary detection efficiencies for secure quantum key distribution and bound randomness
- Nonlocal Advantages of Quantum Imaginarity
- Experimental demonstration of one-sided device-independent self-testing of any pure two-qubit entangled state
- Bipartite post-quantum steering in generalised scenarios
- Semi-Device-Independent Random Number Generation with Flexible Assumptions
- Reliable experimental certification of one-way Einstein-Podolsky-Rosen steering
- Robust Semi-Device Independent Certification of All Pure Bipartite Maximally Entangled States via Quantum Steering
- Einstein-Podolsky-Rosen steering based on semi-supervised machine learning
- Quantum steering with positive operator valued measures
- Detected the steerability bounds of the generalized Werner states via BackPropagation neural network
- Quantum steering with vector vortex photon states with the detection loophole closed
- Measurement-device-independent randomness generation with arbitrary quantum states
- Distillation of genuine tripartite Einstein-Podolsky-Rosen steering
- General Method for Classicality Certification in the Prepare and Measure Scenario
- Einstein-Podolsky-Rosen Steering Criterion and Monogamy Relation via Correlation Matrices in Tripartite Systems
- One-Sided Device-Independent Random Number Generation Through Fiber Channels
- Certified Random Number Generation from Quantum Steering
- How much randomness can be generated from a quantum black-box device?
- Steering-based randomness certification with squeezed states and homodyne measurements
- Distrustful quantum steering
- The resource theory of nonclassicality of channel assemblages
- Homodyne detection of non-Gaussian quantum steering
- Does conditional entropy squeezing indicate normalized entropic uncertainty relation steering?
- Measurement-device-independent and arbitrarily loss-tolerant verification of quantum steering
- Maximizing device-independent randomness from a Bell experiment by optimizing the measurement settings
- Superunsteerability as a quantifiable resource for random access codes assisted by Bell-diagonal states
- Authenticated teleportation with one-sided trust
- Certification of non-Gaussian Einstein-Podolsky-Rosen Steering
- Interplays between classical and quantum entanglement-assisted communication scenarios
- Adjusting inequalities for detection-loophole-free steering experiments
- Quantum thermodynamic advantage in work extraction from steerable quantum correlations
- Semi-device independent randomness certification using Mermin's proof of Kochen-Specker contextuality
- Experimental distillation of tripartite quantum steering with an optimal local filtering operation
- Biased Random Access Codes
- On characterising assemblages in Einstein-Podolsky-Rosen scenarios
- Improving semi-device-independent randomness certification by entropy accumulation
- Detecting Tripartite Steering via Quantum Entanglement
- Certified Randomness From Steering Using Sequential Measurements
- Analysis of Quantum Steering Measures
- Hidden Steering Nonlocality in Quantum Networks
- Averaged fidelity-based steering criteria
- Diagnosing steerability of a bipartite state with the nonsteering threshold
- Necessary and Sufficient Condition for Randomness Certification from Incompatibility
- Quantifying Quantum Steering with Limited Resources: A Semi-supervised Machine Learning Approach
- Robust one-sided self-testing of two-qubit states via quantum steering
- Activation of post-quantumness in bipartite generalised EPR scenarios
- EPR steering in symmetrical Gaussian states
- Certifying asymmetry in the configuration of three qubits
- Device-independent Shannon entropy certification
- Operational simultaneous correlations in complementary bases of bipartite states via one-sided semi-device-independent steering
- Parameterized steering criteria via correlation matrices
- Imprecise quantum steering inequalities in tripartite systems
- Semi-device-independent certification of number of measurements
- Operational Coherent Measurements with Steering and Randomness
- Evaluating Quantumness, Efficiency and Cost of Quantum Random Number Generators via Photon Statistics
- Multipartite steering verification with imprecise measurements