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Among the most studied tasks in Quantum Cryptography one can find Bit Commitment (BC) and Oblivious Transfer (OT), two central cryptographic primitives.
Low-density parity-check codes
R. Gallager · 1962
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Probability inequalities for sums of bounded random variables
Wassily Hoeffding · 1963
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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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How to exchange secrets with oblivious transfer
Michael O. Rabin · 1981
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Multiparty computations ensuring privacy of each party’s input and correctness of the result
David Chaum, Ivan B Damgård, and Jeroen Van de Graaf · 1987
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Finding cryptography in oblivious transfer
J Kilian · 1988
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Bit commitment using pseudo-randomness
Moni Naor · 1989
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Proofs that yield nothing but their validity or all languages in np have zero-knowledge proof systems
Oded Goldreich, Silvio Micali, and Avi Wigderson · 1991
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Advances in Cryptology — CRYPTO ’91: Proceedings
C. H. Bennett, G. Brassard, C. Crépeau, and M.-H. Skubiszewska · 1992
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Conditionally-perfect secrecy and a provably-secure randomized cipher
U. Maurer · 1992
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Is quantum bit commitment really possible?
Hoi-Kwong Lo and H. F. Chau · 1997
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Unconditionally secure quantum bit commitment is impossible
D. Mayers · 1997
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Why quantum bit commitment and ideal quantum coin tossing are impossible
H.-K. Lo and H. F. Chau · 1998
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Quantum cryptography with imperfect apparatus
D. Mayers and A. Yao · 1998
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Maximum efficiency of a linear-optical bell-state analyzer
John Calsamiglia and Norbert Lütkenhaus · 2001
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Cryptography in the bounded quantum-storage model
I. B. Damgård, S. Fehr, L. Salvail, and C. Schaffner · 2005
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Decoy state quantum key distribution
Hoi-Kwong Lo, Xiongfeng Ma, and Kai Chen · 2005
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Basing cryptographic protocols on tamper-evident seals
Tal Moran and Moni Naor · 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
Cited alongside, same era.
Effects of detector efficiency mismatch on security of quantum cryptosystems
Vadim Makarov, Andrey Anisimov, and Johannes Skaar · 2006
Cited alongside, same era.
Device-independent security of quantum cryptography against collective attacks
A. Acín, N. Brunner, N. Gisin, S. Massar, S. Pironio, and V. Scarani · 2007
Cited alongside, same era.
A tight high-order entropic quantum uncertainty relation with applications
Ivan B. Damgård, Serge Fehr, Renato Renner, Louis Salvail, and Christian Schaffner · 2007
Cited alongside, same era.
Advances in Cryptology - CRYPTO 2007: 27th Annual International Cryptology Conference, Santa Barbara, CA, USA, August 19-23, 2007. Proceedings
I. B. Damgård, S. Fehr, L. Salvail, and C. Schaffner · 2007
Cited alongside, same era.
Finite-key analysis for measurement-device-independent quantum key distribution
Marcos Curty, Feihu Xu, Wei Cui, Charles Ci Wen Lim, Kiyoshi Tamaki, and Hoi-Kwong Lo · 2014
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An experimental implementation of oblivious transfer in the noisy storage model
C. Erven, N. Ng, N. Gigov, R. Laflamme, S. Wehner, and G. Weihs · 2014
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Experimental demonstration of polarization encoding measurement-device-independent quantum key distribution
Zhiyuan Tang, Zhongfa Liao, Feihu Xu, Bing Qi, Li Qian, and Hoi-Kwong Lo · 2014
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Measurement-device-independent quantum key distribution over 200 km
Yan-Lin Tang, Hua-Lei Yin, Si-Jing Chen, Yang Liu, Wei-Jun Zhang, Xiao Jiang, Lu Zhang, Jian Wang, Li-Xing You, Jian-Yu Guan, Dong-Xu Yang, Zhen Wang, Hao Liang, Zhen Zhang, Nan Zhou, Xiongfeng Ma, Teng-Yun Chen, Qiang Zhang, and Jian-Wei Pan · 2014
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Linear Programming
Robert J Vanderbei · 2014
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Oblivious-transfer amplification
Jürg Wullschleger · 2007
Cited alongside, same era.
Composing quantum protocols in a classical environment
Serge Fehr and Christian Schaffner · 2009
Cited alongside, same era.
Device-independent quantum key distribution secure against collective attacks
S. Pironio, A. Acín, N. Brunner, N. Gisin, S. Massar, and V. Scarani · 2009
Cited alongside, same era.
A fully quantum asymptotic equipartition property
M. Tomamichel, R. Colbeck, and R. Renner · 2009
Cited alongside, same era.
Implementation of two-party protocols in the noisy-storage model
S. Wehner, M. Curty, C. Schaffner, and H.-K. Lo · 2010
Cited alongside, same era.
Fully distrustful quantum bit commitment and coin flipping
J. Silman, A. Chailloux, N. Aharon, I. Kerenidis, S. Pironio, and S. Massar · 2011
Cited alongside, same era.
Leftover hashing against quantum side information
M. Tomamichel, C. Schaffner, A. Smith, and R. Renner · 2011
Cited alongside, same era.
Fully device-independent quantum key distribution
U. Vazirani and T. Vidick · 2014
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Entanglement sampling and applications
F. Dupuis, O. Fawzi, and S. Wehner · 2015
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High-rate measurement-device-independent quantum cryptography (article) author
Stefano Pirandola, Carlo Ottaviani, Gaetana Spedalieri, Christian Weedbrook, Samuel L. Braunstein, Seth Lloyd, Tobias Gehring, Christian S. Jacobsen, and Ulrik L. Andersen · 2015
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Attacks exploiting deviation of mean photon number in quantum key distribution and coin tossing
Shihan Sajeed, Igor Radchenko, Sarah Kaiser, Jean-Philippe Bourgoin, Anna Pappa, Laurent Monat, Matthieu Legré, and Vadim Makarov · 2015
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Device-independent bit commitment based on the chsh inequality
N Aharon, S Massar, S Pironio, and J Silman · 2016
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Device-independent two-party cryptography secure against sequential attacks
J. Kaniewski and S. Wehner · 2016
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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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Quantum Information Processing with Finite Resources - Mathematical Foundations
M. Tomamichel · 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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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
Rotem Arnon-Friedman, Frédéric Dupuis, Omar Fawzi, Renato Renner, and Thomas Vidick · 2018
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Towards a realization of device-independent quantum key distribution
Gláucia Murta, Suzanne B. van Dam, Jérémy Ribeiro, Ronald Hanson, and Stephanie Wehner · 2018
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Fully device-independent conference key agreement
Jérémy Ribeiro, Gláucia Murta, and Stephanie Wehner · 2018
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Device independence for two-party cryptography and position verification with memoryless devices
Jérémy Ribeiro, Le Phuc Thinh, J ędrzej Kaniewski, Jonas Helsen, and Stephanie Wehner · 2018
Later among the works it cites.