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Quantum copy-protection, introduced by Aaronson (CCC'09), uses the no-cloning principle of quantum mechanics to protect software from being illegally distributed.
Communication by epr devices
DGBJ Dieks · 1982
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A single quantum cannot be cloned
William K Wootters and Wojciech H Zurek · 1982
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Conjugate coding
Stephen Wiesner · 1983
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Coding theorem and strong converse for quantum channels
A. Winter · 1999
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Uncloneable encryption
Daniel Gottesman · 2002
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Limitations of quantum advice and one-way communication
Scott Aaronson · 2004
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Quantum copy-protection and quantum money
Scott Aaronson · 2009
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Random oracles in a quantum world
Dan Boneh, Özgür Dagdelen, Marc Fischlin, Anja Lehmann, Christian Schaffner, and Mark Zhandry · 2011
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Quantum money from hidden subspaces
Scott Aaronson and Paul Christiano · 2012
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Quantum homomorphic encryption for circuits of low t-gate complexity
Anne Broadbent and Stacey Jeffery · 2015
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On obfuscation with random oracles
Ran Canetti, Yael Tauman Kalai, and Omer Paneth · 2015
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Indistinguishability obfuscation: from approximate to exact
Nir Bitansky and Vinod Vaikuntanathan · 2016
Earlier work this paper cites.
Lockable obfuscation
Rishab Goyal, Venkata Koppula, and Brent Waters · 2017
Cited alongside, same era.
Obfuscating compute-and-compare programs under lwe
Daniel Wichs and Giorgos Zirdelis · 2017
Cited alongside, same era.
Quantum fhe (almost) as secure as classical
Zvika Brakerski · 2018
Cited alongside, same era.
Classical homomorphic encryption for quantum circuits
Urmila Mahadev · 2018
Cited alongside, same era.
On perfect correctness in (lockable) obfuscation
Rishab Goyal, Venkata Koppula, Satyanarayana Vusirikala, and Brent Waters · 2019
Cited alongside, same era.
Semi-quantum money
Roy Radian and Sattath · 2019
Cited alongside, same era.
How to record quantum queries, and applications to quantum indifferentiability
Rate-1 secure function evaluation for bqp
Orestis Chardouvelis, Nico Doettling, and Giulio Malavolta · 2020
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Quantum copy-protection of compute-and-compare programs in the quantum random oracle model
Andrea Coladangelo, Christian Majenz, and Alexander Poremba · 2020
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Unclonable decryption keys
Marios Georgiou and Mark Zhandry · 2020
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Impossibility of quantum virtual black-box obfuscation of classical circuits
Gorjan Alagic, Zvika Brakerski, Yfke Dulek, and Christian Schaffner · 2021
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Uncloneable encryption, revisited
Prabhanjan Ananth and Fatih Kaleoglu · 2021
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New approaches for quantum copy-protection
Scott Aaronson, Jiahui Liu, Qipeng Liu, Mark Zhandry, and Ruizhe Zhang · 2021
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Mark Zhandry · 2019
Cited alongside, same era.
Quantum lightning never strikes the same state twice
Mark Zhandry · 2019
Cited alongside, same era.
One-shot signatures and applications to hybrid quantum/classical authentication
Ryan Amos, Marios Georgiou, Aggelos Kiayias, and Mark Zhandry · 2020
Cited alongside, same era.
Quantum encryption with certified deletion
Anne Broadbent and Rabib Islam · 2020
Cited alongside, same era.
Uncloneable quantum encryption via oracles
Anne Broadbent and Sébastien Lord · 2020
Cited alongside, same era.
Later among the works it cites.
Secure software leasing
Prabhanjan Ananth and Rolando L La Placa · 2021
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Secure software leasing without assumptions
Anne Broadbent, Stacey Jeffery, Sébastien Lord, Supartha Podder, and Aarthi Sundaram · 2021
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Hidden cosets and applications to unclonable cryptography
Andrea Coladangelo, Jiahui Liu, Qipeng Liu, and Mark Zhandry · 2021
Later among the works it cites.
Secure software leasing from standard assumptions
Fuyuki Kitagawa, Ryo Nishimaki, and Takashi Yamakawa · 2021
Later among the works it cites.
On the feasibility of unclonable encryption, and more
Prabhanjan Ananth, Fatih Kaleoglu, Xingjian Li, Qipeng Liu, and Mark Zhandry · 2022
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