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We present the first security analysis of conference key agreement (CKA) in the most adversarial model of device independence (DI).
Proposed experiment to test local hidden-variable theories
J. F. Clauser, M. A. Horne, A. Shimony, and R. A. Holt · 1969
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Quantum cryptography based on Bell’s theorem
A. K. Ekert · 1991
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Secret-Key Reconciliation by Public Discussion
G. Brassard and L. Salvail · 1994
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A secure and efficient conference key distribution system
M. Burmester and Y. Desmedt · 1995
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Quantum cryptography with imperfect apparatus
D. Mayers and A. Yao · 1998
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No signaling and quantum key distribution
J. Barrett, L. Hardy, and A. Kent · 2005
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Conference key agreement and quantum sharing of classical secrets with noisy GHZ states
K. Chen and H.-K. Lo · 2005
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Security of Quantum Key Distribution
R. Renner · 2005
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Simple and Tight Bounds for Information Reconciliation and Privacy Amplification
R. Renner and S. Wolf · 2005
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Universally composable privacy amplification against quantum adversaries
R. Renner and R. König · 2005
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Device-independent security of quantum cryptography against collective attacks
A. Acín, N. Brunner, N. Gisin, S. Massar, S. Pironio, and V. Scarani · 2007
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Device-independent quantum key distribution secure against collective attacks
S. Pironio, A. Acín, N. Brunner, N. Gisin, S. Massar, and V. Scarani · 2009
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A fully quantum asymptotic equipartition property
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Secure device-independent quantum key distribution with causally independent measurement devices
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Quantum tagging for tags containing secret classical data
A. Kent · 2011
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Leftover hashing against quantum side information
M. Tomamichel, C. Schaffner, A. Smith, and R. Renner · 2011
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A monogamy-of-entanglement game with applications to device-independent quantum cryptography
M. Tomamichel, S. Fehr, J. Kaniewski, and S. Wehner · 2013
Simple and tight device-independent security proofs
R. Arnon-Friedman, R. Renner, and T. Vidick · 2016
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Device-independence for two-party cryptography and position verification
J. Ribeiro, L. Phuc Thinh, J. Kaniewski, J. Helsen, and S. Wehner · 2016
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Device-independent two-party cryptography secure against sequential attacks
J. Kaniewski and S. Wehner · 2016
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F. Dupuis, O. Fawzi, and R. Renner · 2016
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Quantum Information Processing with Finite Resources - Mathematical Foundations
M. Tomamichel · 2016
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Memory attacks on device-independent quantum cryptography
J. Barrett, R. Colbeck, and A. Kent · 2013
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Infinite Randomness Expansion and Amplification with a Constant Number of Devices
M. Coudron and H. Yuen · 2013
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Quantum cryptography: Public key distribution and coin tossing
C. H. Bennett and G. Brassard · 2014
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Fully device-independent quantum key distribution
U. Vazirani and T. Vidick · 2014
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Cryptographic security of quantum key distribution
C. Portmann and R. Renner · 2014
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Robust Protocols for Securely Expanding Randomness and Distributing Keys Using Untrusted Quantum Devices
C. A. Miller and Y. Shi · 2016
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Fully general device-independence for two-party cryptography and position verification
J. Ribeiro, G. Murta, and S. Wehner · 2016
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Universal security for randomness expansion from the spot-checking protocol
C. A. Miller and Y. Shi · 2017
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Multi-partite entanglement can speed up quantum key distribution in networks
Michael Epping, Hermann Kampermann, Chiara Macchiavello, and Dagmar Bruss · 2017
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A largely self-contained and complete security proof for quantum key distribution
Marco Tomamichel and Anthony Leverrier · 2017
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Practical device-independent quantum cryptography via entropy accumulation
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Device independence for two-party cryptography and position verification with memoryless devices
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