MHz-rate semi-device-independent quantum random number generators based on unambiguous state discrimination
arXiv:1612.06566 · doi:10.1103/PhysRevApplied.7.054018
Abstract
An approach to quantum random number generation based on unambiguous quantum state discrimination (USD) is developed. We consider a prepare-and-measure protocol, where two non-orthogonal quantum states can be prepared, and a measurement device aims at unambiguously discriminating between them. Because the states are non-orthogonal, this necessarily leads to a minimal rate of inconclusive events whose occurrence must be genuinely random and which provide the randomness source that we exploit. Our protocol is semi-device-independent in the sense that the output entropy can be lower bounded based on experimental data and few general assumptions about the setup alone. It is also practically relevant, which we demonstrate by realising a simple optical implementation achieving rates of 16.5 Mbits/s. Combining ease of implementation, high rate, and real-time entropy estimation, our protocol represents a promising approach intermediate between fully device-independent protocols and commercial QRNGs.
9 pages, 6 figures
References in corpus (26)
- Random Numbers Certified by Bell's Theorem
- Quantum Random Number Generators
- The operational meaning of min- and max-entropy
- Detection-Loophole-Free Test of Quantum Nonlocality, and Applications
- Fast and simple one-way Quantum Key Distribution
- Certified randomness in quantum physics
- Semi-device-independent security of one-way quantum key distribution
- Postprocessing for quantum random number generators: entropy evaluation and randomness extraction
- A High Speed, Post-Processing Free, Quantum Random Number Generator
- Real time demonstration of high bitrate quantum random number generation with coherent laser light
- A self-testing quantum random number generator
- Quantum Randomness Certified by the Uncertainty Principle
- Ultra-fast quantum randomness generation by accelerated phase diffusion in a pulsed laser diode
- Quantum random number generator based on photonic emission in semiconductors
- Source-device-independent Ultra-fast Quantum Random Number Generation
- Source-independent quantum random number generation
- More Randomness from the Same Data
- Semi-device independent random number expansion without entanglement
- Practical and fast quantum random number generation based on photon arrival time relative to external reference
- Certifying the dimension of classical and quantum systems in a prepare-and-measure scenario with independent devices
- Semi-device independent random number expansion protocol with n to 1 quantum random access codes
- Quantum random number generation on a mobile phone
- Loss-tolerant measurement-device-independent quantum random number generation
- Experimental fast quantum random number generation using high-dimensional entanglement with entropy monitoring
- Secrecy in prepare-and-measure CHSH tests with a qubit bound
- Increased Certification of Semi-device Independent Random Numbers using Many Inputs and More Postprocessing
Cited by in corpus (75)
- Continuous-variable quantum key distribution system: past, present, and future
- Secure heterodyne-based quantum random number generator at 17 Gbps
- High speed self-testing quantum random number generation without detection loophole
- Self-testing quantum states and measurements in the prepare-and-measure scenario
- Semi-device-independent framework based on natural physical assumptions
- A Comprehensive Review of Quantum Random Number Generators: Concepts, Classification and the Origin of Randomness
- Self-testing non-projective quantum measurements in prepare-and-measure experiments
- Characterising the correlations of prepare-and-measure quantum networks
- Experimental characterisation of unsharp qubit observables and sequential measurement incompatibility via quantum random access codes
- Enabling computation of correlation bounds for finite-dimensional quantum systems via symmetrisation
- High Speed Continuous Variable Source-Independent Quantum Random Number Generation
- Semidefinite programming relaxations for quantum correlations
- Practical self-testing quantum random number generator based on an energy bound
- Semi-Device-Independent Heterodyne-based Quantum Random Number Generator
- Contextual advantages and certification for maximum confidence discrimination
- Quantifying coherence with respect to general quantum measurements
- Causal modeling the delayed choice experiment
- Practical Semi-Device Independent Randomness Generation Based on Quantum State's Indistinguishability
- Certified Quantum Random Numbers from Untrusted Light
- Simulating all quantum measurements using only projective measurements and postselection
- Simple source device-independent continuous-variable quantum random number generator
- Quantum Random Number Generation with Uncharacterized Laser and Sunlight
- Provably-secure quantum randomness expansion with uncharacterised homodyne detection
- Informationally restricted quantum correlations
- Semi-device-independent quantum random number generator with a broadband squeezed state of light
- Informationally restricted correlations: a general framework for classical and quantum systems
- Fast self-testing Quantum Random Number Generator based on homodyne detection
- Semi-device-independent framework based on restricted distrust in prepare-and-measure experiments
- Coherence as a resource for source-independent quantum random-number generation
- Experimental self-characterization of quantum measurements
- A universal scheme for robust self-testing in the prepare-and-measure scenario
- Semi-device independent randomness from d-outcome continuous-variable detection
- An eavesdropping attack on a trusted continuous-variable quantum random number generator
- Semi-Device-Independent Random Number Generation with Flexible Assumptions
- Unbounded randomness from uncharacterized sources
- Certified quantum random number generator based on single-photon entanglement
- High-speed Source-Device-Independent Quantum Random Number Generator on a Chip
- Quantum randomness protected against detection loophole attacks
- Measurement-device-independent randomness generation with arbitrary quantum states
- Practical randomness amplification and privatisation with implementations on quantum computers
- Enhanced discrimination of high-dimensional quantum states by concatenated optimal measurement strategies
- Semi-device-independent characterization of quantum measurements under a minimum overlap assumption
- How much randomness can be generated from a quantum black-box device?
- Self-testing mutually unbiased bases in higher dimensions with space-division multiplexing optical fiber technology
- Steering-based randomness certification with squeezed states and homodyne measurements
- Receiver-Device-Independent Quantum Key Distribution
- Single system based generation of certified randomness using Leggett-Garg inequality
- Measurement-device-independent quantum random number generation over 23 Mbps with imperfect single-photon sources
- Bounds on semi-device-independent quantum random number expansion capabilities
- Numerical Framework for Semi-Device-Independent Quantum Random Number Generators
- Prepare-and-measure scenarios with photon-number constraints
- Information capacity of quantum communication under natural physical assumptions
- Independent quality assessment of a commercial quantum random number generator
- The m-least significant bits operation for quantum random number generation
- Semi-device independent randomness certification using Mermin's proof of Kochen-Specker contextuality
- Coherence based on positive operator-valued measures for standard and concatenated quantum state discrimination with inconclusive results
- Certification of unbounded randomness with arbitrary noise
- Prepare-and-Magic: Semi-Device Independent Magic Certification in the Prepare-and-Measure Scenario
- Self-testing of semisymmetric informationally complete measurements in a qubit prepare-and-measure scenario
- Generalized measurements on qubits in quantum randomness certification and expansion
- Improving semi-device-independent randomness certification by entropy accumulation
- Fast semidefinite programming with feedforward neural networks
- Towards minimal self-testing of qubit states and measurements in prepare-and-measure scenarios
- Estimating the privacy of quantum-random numbers
- Global restrictions under local state discrimination
- The role of entanglement in energy-restricted communication and randomness generation
- Translating Bell Non-Locality to Prepare-and-Measure Scenarios under Dimensional Constraints
- Semi-device-independent randomness certification on discretized continuous-variable platforms
- Contextual advantages across two-state discrimination strategies
- Experimental certification of ensembles of high-dimensional quantum states with independent quantum devices
- Contextuality-enhanced quantum state discrimination under fixed failure probability
- Quantum Random Number Generation with Partial Source Assumptions
- Sharing quantum indistinguishability with multiple parties
- Quantum vs. noncontextual semi-device-independent randomness certification
- Multi-core fiber integrated multi-port beamsplitters for quantum information processing