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We examine the possibility of device-independent relativistic quantum bit commitment.
D. Mayers, Unconditionally secure quantum bit commitment is impossible,
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D. Mayers, Unconditionally secure quantum bit commitment is impossible,
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H.-K. Lo and H. Chau, Is quantum bit commitment really possible?, Phys. Rev. Lett. 78 3410-3413 (1997)
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Quantum cryptography with imperfect apparatus
Mayers, D. & Yao, A · 1998
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A. Kent, Unconditionally secure bit commitment,
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A. Kent, Impossibility of unconditionally secure commitment of a certified classical bit,
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A. Kent, Secure Classical Bit Commitment using Fixed Capacity Communication Channels, J. Cryptology 18 (2005) 313-335
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No signalling and quantum key distribution
Barrett, J., Hardy, L. & Kent, A · 2005
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R. Colbeck and A. Kent, Variable Bias Coin Tossing, Phys. Rev. A 73, 032320 (2006)
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From Bell’s theorem to secure quantum key distribution
Acin, A., Gisin, N. & Masanes, L · 2006
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Secrecy extraction from no-signaling correlations
Scarani, V · 2006
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Maximally non-local and monogamous quantum correlations
Barrett, J., Kent, A. & Pironio, S · 2006
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G. D’Ariano, D. Kretschmann, D. Schlingemann, R. Werner, Reexamination of Quantum Bit Commitment: the Possible and the Impossible, Phys. Rev. A 76, 032328 (2007)
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Device-independent security of quantum cryptography against collective attacks
Acin, A · 2007
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A. Rudra, Limits to List Decoding Random Codes,
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Unconditional security of key distribution from causality constraints
Masanes, L., Renner, R., Christandl, M., Winter, A. & Barrett, J · 2009
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Universally composable privacy amplification from causality constraints
Masanes, L · 2009
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R. Malaney, Phys. Rev. A 81, 042319 (2010)
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Quantum cryptography based solely on Bell’s theorem
Hänggi, E., Renner, R. & Wolf, S · 2010
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R. Colbeck and A. Kent, Journal of Physics A: Mathematical and Theoretical 44(9), 095305 (2011)
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A. Kent, Quantum Tasks in Minkowski Space, Class. Quantum Grav. 29 (2012) 224013
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A. Kent, Why Classical Certification is Impossible in a Quantum World, Quantum Information Processing, 11 (2), 493-499 (2012)
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A. Kent, Unconditionally Secure Bit Commitment by Transmitting Measurement Outcomes, Phys. Rev. Lett. 109, 130501 (2012)
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Device-independent quantum key distribution with commuting measurements
Hänggi, E. & Renner, R · 2010
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S. Pironio et al., Random numbers certified by Bell’s theorem, Nature 464, 1021-1024, (2010)
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A. Kent, Unconditionally Secure Bit Commitment with Flying Qudits, New J. Phys. 13 113015 (2011)
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A. Kent, Location-Oblivious Data Transfer with Flying Entangled Qudits, Phys. Rev. A 84, 012328 (2011)
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A. Kent, Quantum Tagging for Tags Containing Secret Classical Data, Phys. Rev. A 84, 022335 (2011)
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H. Buhrman et al., arXiv:1009.2490v4 (2011)
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S. Croke and A. Kent, Phys. Rev. A 86, 052309 (2012)
2012
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Memory attacks on device-independent quantum cryptography
Barrett, J., Colbeck, R. & Kent, A · 2012
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J. Barrett, R. Colbeck, A. Kent, Unconditionally secure device-independent quantum key distribution with only two devices, Phys. Rev. A, 86 (2012)
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R. Colbeck, R. Renner, Free randomness can be amplified, Nature Physics, 8, 450-454, (2012)
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A. Kent, A No-summoning theorem in Relativistic Quantum Theory, Quantum Information Processing 12 (2) pp 1023-1032 (2013)
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J. Kaniewski et al., IEEE Trans. on Inf. Theory 59, 4687-4699 (2013)
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Y. Liu et al., Phys. Rev. Lett. 112, 010504 (2014)
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U. Vazirani, T. Vidick, Fully Device-Independent Quantum Key Distribution, Phys. Rev. Lett., 14, (2014)
2014
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