arXiv · 1812.07786
Experimental Low-Latency Device-Independent Quantum Randomness
Abstract
Applications of randomness such as private key generation and public randomness beacons require small blocks of certified random bits on demand. Device-independent quantum random number generators can produce such random bits, but existing quantum-proof protocols and loophole-free implementations suffer from high latency, requiring many hours to produce any random bits. We demonstrate device-independent quantum randomness generation from a loophole-free Bell test with a more efficient quantum-proof protocol, obtaining multiple blocks of $512$ bits with an average experiment time of less than $5$ min per block and with a certified error bounded by $2^{-64}\approx 5.42\times 10^{-20}$.
Explore related subjects
Keep this discovery
Yanbao Zhang, Lynden K. Shalm, Joshua C. Bienfang, Martin J. Stevens, Michael D. Mazurek, Sae Woo Nam, Carlos Abellán, Waldimar Amaya, Morgan W. Mitchell, Honghao Fu, Carl A. Miller, Alan Mink, Emanuel Knill. 2018-12-19. Experimental Low-Latency Device-Independent Quantum Randomness. https://doi.org/10.1103/physrevlett.124.010505
Cite the original work for its findings. Save a collection to share your selection of sources.