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A recent publication by the NSA assessing the usability of quantum cryptography has generated significant attention, concluding that this technology is not recommended for use.
A method for obtaining digital signatures and public-key cryptosystems
Ron L. Rivest, Adi Shamir, and Leonard Adleman · 1978
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Communication by EPR devices
Dennis Dieks · 1982
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A single quantum cannot be cloned
William K. Wootters and Wojciech H. Zurek · 1982
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Algorithms for quantum computation: Discrete logarithms and factoring
Peter W. Shor · 1994
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Quantum repeaters: the role of imperfect local operations in quantum communication
Hans J. Briegel, Wolfgang Dür, J. Ignacio Cirac, and Peter Zoller · 1998
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Quantum limits in optical communications
Konrad Banaszek, Ludwig Kunz, Michal Jachura, and Marcin Jarzyna · 2002
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Security of quantum key distribution with imperfect devices
Daniel Gottesman, Hoi-Kwong Lo, Norbert Lütkenhaus, and John Preskill · 2004
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The exact price for unconditionally secure asymmetric cryptography
Renato Renner and Stefan Wolf · 2004
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Nilesh Vyas and Romain Alléaume · 2004
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Designing quantum networks using preexisting infrastructure
Julian Rabbie, Kaushik Chakraborty, Guus Avis, and Stephanie Wehner · 2005
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Effects of detector efficiency mismatch on security of quantum cryptosystems
Vadim Makarov, Andrey Anisimov, and Johannes Skaar · 2006
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Non-malleable extractors and symmetric key cryptography from weak secrets
Yevgeniy Dodis and Daniel Wichs · 2009
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Device-independent quantum key distribution secure against collective attacks
Stefano Pironio, Antonio Acín, Nicolas Brunner, Nicolas Gisin, Serge Massar, and Valerio Scarani · 2009
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Hacking commercial quantum cryptography systems by tailored bright illumination
Lars Lydersen, Carlos Wiechers, Christoffer Wittmann, Dominique Elser, Johannes Skaar, and Vadim Makarov · 2010
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Full-field implementation of a perfect eavesdropper on a quantum cryptography system
Ilja Gerhardt, Qin Liu, Antía Lamas-Linares, Johannes Skaar, Christian Kurtsiefer, and Vadim Makarov · 2011
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Quantum repeaters based on atomic ensembles and linear optics
Nicolas Sangouard, Christoph Simon, Hugues de Riedmatten, and Nicolas Gisin · 2011
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Side-channel-free quantum key distribution
Samuel L. Braunstein and Stefano Pirandola · 2012
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Measurement-device-independent quantum key distribution
Hoi-Kwong Lo, Marcos Curty, and Bing Qi · 2012
Cited alongside, same era.
The black paper of quantum cryptography: Real implementation problems
Valerio Scarani and Christian Kurtsiefer · 2014
Cited alongside, same era.
Loss-tolerant quantum cryptography with imperfect sources
Kiyoshi Tamaki, Marcos Curty, Go Kato, Hoi-Kwong Lo, and Koji Azuma · 2014
Cited alongside, same era.
Recommendation for key management part 3: Application-specific key management guidance
Elaine B. Barker and Quynh H. Dang · 2015
Cited alongside, same era.
Highly efficient algorithms for AES key retrieval in cache access attacks
C. Ashokkumar, Ravi Prakash Giri, and Bernard Menezes · 2016
Cited alongside, same era.
An efficient key recovery attack on SIDH
Wouter Castryck and Thomas Decru · 2022
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Breaking a fifth-order masked implementation of CRYSTALS-Kyber by copy-paste
Elena Dubrova, Kalle Ngo, and Joel Gärtner · 2022
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Long-range QKD without trusted nodes is not possible with current technology
Bruno Huttner, Romain Alléaume, Eleni Diamanti, Florian Fröwis, Philippe Grangier, Hannes Hübel, Vicente Martin, Andreas Poppe, Joshua A. Slater, Tim Spiller, Wolfgang Tittel, Benoit Tranier, Adrian Wonfor, and Hugo Zbinden · 2022
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Toward a photonic demonstration of device-independent quantum key distribution
Wen-Zhao Liu, Yu-Zhe Zhang, Yi-Zheng Zhen, Ming-Han Li, Yang Liu, Jingyun Fan, Feihu Xu, Qiang Zhang, and Jian-Wei Pan · 2022
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Experimental quantum key distribution certified by Bell’s theorem
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Practical challenges in quantum key distribution
Eleni Diamanti, Hoi-Kwong Lo, Bing Qi, and Zhiliang Yuan · 2016
Cited alongside, same era.
Post-quantum cryptography
Daniel J. Bernstein and Tanja Lange · 2017
Cited alongside, same era.
Quantum internet: A vision for the road ahead
Stephanie Wehner, David Elkouss, and Ronald Hanson · 2018
Cited alongside, same era.
Eliminating timing side-channel leaks using program repair
Meng Wu, Shengjian Guo, Patrick Schaumont, and Chao Wang · 2018
Cited alongside, same era.
Factorization of RSA-250
Fabrice Boudot, Pierrick Gaudry, Aurore Guillevic, Nadia Heninger, Emmanuel Thomé, and Paul Zimmermann · 2020
Cited alongside, same era.
Many a mickle makes a muckle: A framework for provably quantum-secure hybrid key exchange
Benjamin Dowling, Torben Brandt Hansen, and Kenneth G. Paterson · 2020
Cited alongside, same era.
Power side-channel attack analysis: A review of 20 years of study for the layman
Mark Randolph and William Diehl · 2020
Cited alongside, same era.
David P. Nadlinger, Peter Drmota, Bethan C. Nichol, Gabriel Araneda, Dougal Main, Raghavendra Srinivas, David M. Lucas, Christopher J. Ballance, Kirill Ivanov, Ernest Y.-Z. Tan, Pavel Sekatski, Rüdiger L. Urbanke, Renato Renner, Nicolas Sangouard, and Jean-Daniel Bancal · 2022
Later among the works it cites.
A review and comparison of AI-enhanced side channel analysis
Max Panoff, Honggang Yu, Haoqi Shan, and Yier Jin · 2022
Later among the works it cites.
A device-independent quantum key distribution system for distant users
Wei Zhang, Tim van Leent, Kai Redeker, Robert Garthoff, René Schwonnek, Florian Fertig, Sebastian Eppelt, Wenjamin Rosenfeld, Valerio Scarani, Charles C.-W. Lim, and Harald Weinfurter · 2022
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ANSSI views on the post-quantum cryptography transition
Agence nationale de la sécurité des systèmes d’information (ANSSI) · 2023
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A graduate course in applied cryptography
Dan Boneh and Victor Shoup · 2023
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Quantum networks with neutral atom processing nodes
Jacob P. Covey, Harald Weinfurter, and Hannes Bernien · 2023
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Quantum security technologies
National Cyber Security Center (NCSC) · 2023
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Post-quantum cryptography standardization
National Institute of Standards and Technology (NIST) · 2023
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Quantum key distribution (QKD) and quantum cryptography (QC)
National Security Agency (NSA) · 2023
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Modified BB84 quantum key distribution protocol robust to source imperfections
Margarida Pereira, Guillermo Currás-Lorenzo, Álvaro Navarrete, Akihiro Mizutani, Go Kato, Marcos Curty, and Kiyoshi Tamaki · 2023
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Community response to the NCSC 2020 quantum security technologies white paper
Quantum Communications Hub · 2023
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Quantum advantage in cryptography
Renato Renner and Ramona Wolf · 2023
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