Experimental randomness amplification

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Experimental randomness amplification

Colbeck, R. & Renner, R. Free randomness can be amplified. Nat. Phys. 8 , 450–454 (2012). Article CAS Google Scholar Hensen, B. et al. …

Colbeck, R. & Renner, R. Free randomness can be amplified. Nat. Phys. 8 , 450–454 (2012). Article CAS Google Scholar Hensen, B. et al. Loophole-free Bell inequality violation using electron spins separated by 1.3 kilometres. Nature 526 , 682–686 (2015). Article ADS CAS PubMed Google Scholar Giustina, M. et al. Significant-loophole-free test of Bell’s theorem with entangled photons. Phys. Rev. Lett. 115 , 250401 (2015). Article ADS PubMed Google Scholar Shalm, L. K. et al. Strong loophole-free test of local realism. Phys. Rev. Lett. 115 , 250402 (2015). Article ADS PubMed PubMed Central Google Scholar Santha, M. & Vazirani, U. V. Generating quasi-random sequences from semi-random sources. J. Comput. Syst. Sci. 33 , 75–87 (1986). Article Google Scholar Brown, G. W. History of RAND’s Random Digits: Summary Technical Report P113 (RAND, 1949); http://www.rand.org/pubs/papers/P113.html . von Neumann, J. John von Neumann Collected Works, Vol. 5: Design of Computers, Theory of Automata and Numerical Analysis 768–770 (Pergamon Press, 1961). Colbeck, R. & Renner, R. No extension of quantum theory can have improved predictive power. Nat. Commun. 2 , 411 (2011). Article ADS PubMed PubMed Central Google Scholar Petrov, M. et al. Independent quality assessment of a commercial quantum random number generator. EPJ Quantum Technol. 9 , 17 (2022). Article ADS Google Scholar Rivest, R. L., Shamir, A. & Adleman, L. A method for obtaining digital signatures and public-key cryptosystems. Commun. …

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