Entanglement's Benefit Survives an Entanglement-Breaking Channel
arXiv:1303.5343 · doi:10.1103/PhysRevLett.111.010501
Abstract
Entanglement is essential to many quantum information applications, but it is easily destroyed by quantum decoherence arising from interaction with the environment. We report the first experimental demonstration of an entanglement-based protocol that is resilient to loss and noise which destroy entanglement. Specifically, despite channel noise 8.3 dB beyond the threshold for entanglement breaking, eavesdropping-immune communication is achieved between Alice and Bob when an entangled source is used, but no such immunity is obtainable when their source is classical. The results prove that entanglement can be utilized beneficially in lossy and noisy situations, i.e., in practical scenarios.
11 pages, 4 figures, 1 table
References in corpus (8)
- The Quantum Internet
- Experimental quantum teleportation
- Beating the channel capacity limit for linear photonic superdense coding
- Quantum Illumination with Gaussian States
- Quantum teleportation using active feed-forward between two Canary Islands
- Shor's quantum factoring algorithm on a photonic chip
- Experimental realisation of quantum illumination
- Gaussian-state quantum-illumination receivers for target detection
Cited by in corpus (84)
- Advances in Quantum Cryptography
- Advances in Photonic Quantum Sensing
- Quantum Illumination at the Microwave Wavelengths
- Microwave Quantum Illumination
- Quantum enhanced measurements without entanglement
- Measures and applications of quantum correlations
- Generation and Confirmation of a (100x100)-dimensional entangled Quantum System
- Entanglement-Enhanced Sensing in a Lossy and Noisy Environment
- Real applications of quantum imaging
- Microwave quantum illumination using a digital receiver
- Overcoming Noise in Entanglement Distribution
- Imaging Through Noise With Quantum Illumination
- Quantum-Enhanced Noise Radar
- The Evolution of Quantum Secure Direct Communication: On the Road to the Qinternet
- Photon number correlation for quantum enhanced imaging and sensing
- Quantum Estimation Methods for Quantum Illumination
- Fundamental limits to quantum channel discrimination
- Quantum imaging with sub-Poissonian light: challenges and perspectives in optical metrology
- Gaussian hypothesis testing and quantum illumination
- Fundamental limits of quantum illumination
- How Discord underlies the Noise Resilience of Quantum Illumination
- Multidimensional quantum-enhanced target detection via spectro-temporal correlation measurements
- Practical route to entanglement-assisted communication over noisy bosonic channels
- Nonclassical Light and Metrological Power: An Introductory Review
- Two-way quantum cryptography at different wavelengths
- Quantum ranging with Gaussian entanglement
- Distributed quantum sensing enhanced by continuous-variable error correction
- Entanglement-enhanced Neyman-Pearson target detection using quantum illumination
- Entanglement-Assisted Communication Surpassing the Ultimate Classical Capacity
- Terahertz Quantum Cryptography
- Floodlight Quantum Key Distribution: A Practical Route to Gbps Secret-Key Rates
- Entanglement Detection Beyond Measuring Fidelities
- Quantum illumination reveals phase-shift inducing cloaking
- Measurement-device-independent quantum communication with an untrusted source
- General immunity and superadditivity of two-way Gaussian quantum cryptography
- Two-way Gaussian quantum cryptography against coherent attacks in direct reconciliation
- Modular network for high-rate quantum conferencing
- Quantum key distribution with phase-encoded coherent states: Asymptotic security analysis in thermal-loss channels
- Quantifying the source of enhancement in experimental continuous variable quantum illumination
- Optimal probes for continuous variable quantum illumination
- Characterizing entanglement dimensionality from randomized measurements
- Improve Microwave Quantum Illumination Via Optical Parametric Amplifier
- Quantum Induced Coherence Light Detection and Ranging
- A detailed description of the experimental realisation of quantum illumination protocol
- Quantum learning of coherent states
- Quantum Illumination and Quantum Radar: A Brief Overview
- Two-way covert quantum communication in the microwave regime
- Experimental Quantum Target Detection Approaching the Fundamental Helstrom Limit
- Quantum-enhanced barcode decoding and pattern recognition
- Floodlight Quantum Key Distribution: Demonstrating a New Framework for High-Rate Secure Communication
- Quantum-enhanced pattern recognition
- Overarching framework between Gaussian quantum discord and Gaussian quantum illumination
- Quantum differential ghost microscopy
- Bounds on amplitude damping channel discrimination
- Gaussian State-Based Quantum Illumination with Simple Photodetection
- Quantum reading capacity under thermal and correlated noise
- Dissipative stabilization of high-dimensional GHZ states for neutral atoms
- Enhanced absorption microscopy with correlated photon pairs
- Gravity enhanced quantum spatial target detection
- Noisy receivers for quantum illumination
- Ultimate Limits of Thermal Pattern Recognition
- Cryptographic aspects of quantum reading
- Feedback-enabled Microwave Quantum Illumination
- A comparison between quantum and classical noise radar sources
- Energetic Considerations in Quantum Target Ranging
- Noiseless linear amplification in quantum target detection using Gaussian states
- Thermal quantum metrology in memoryless and correlated environments
- Quantum illumination using polarization-path entangled single photons for low reflectivity object detection in noisy background
- Classical benchmarking for microwave quantum illumination
- Quantum microwave parametric interferometer
- Quantum illumination using polarization-entangled photon pairs for enhanced object detection
- Driving many distant atoms into high-fidelity steady state entanglement via Lyapunov control
- Optimal squeezing for quantum target detection
- Quantum Target Ranging for LiDAR
- Idler-Free Multi-Channel Discrimination via Multipartite Probe States
- Quantum illumination with noisy probes: Conditional advantages of non-Gaussianity
- Analytical Bounds for Dynamic Multi-Channel Discrimination
- On quantum illumination, quantum reading, and the capacity of quantum computation
- Analytical bounds for non-asymptotic asymmetric state discrimination
- Symmetric and asymmetric discrimination of bosonic loss: Toy applications to biological samples and photo-degradable materials
- Quantum illumination with multiple entangled photons
- Optimal probe states for single-mode quantum target detection in arbitrary object reflectivity
- Inherently unpredictable beam steering for quantum LiDAR
- Quantum-elevated Chiral Discrimination for Bio-molecules