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When can quantum information be localized to each of a collection of spacetime regions, while also excluded from another collection of regions? We answer this question by defining and analyzing the localize-exclude task, in which a quantum system must be localized to a collection of authorized regions while also being excluded from a set of unauthorized regions.
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Adi Shamir · 1979
Earlier work this paper cites.
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Leonard Susskind, Larus Thorlacius, and John Uglum · 1993
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Hoi-Kwong Lo and Hoi Fung Chau · 1997
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Dominic Mayers · 1997
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David Beckman, Daniel Gottesman, MA Nielsen, and John Preskill · 2001
Earlier work this paper cites.
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Raphael Bousso · 2002
Earlier work this paper cites.
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Ivette Fuentes-Schuller and Robert B Mann · 2005
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Damian Markham and Barry C Sanders · 2008
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Pradeep Sarvepalli and Robert Raussendorf · 2010
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Amos Beimel · 2011
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Ahmed Almheiri, Donald Marolf, Joseph Polchinski, and James Sully · 2013
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Quantum computation vs. firewalls
Daniel Harlow and Patrick Hayden · 2013
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Patrick Hayden and Alex May · 2016
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Emily Adlam and Adrian Kent · 2016
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Patrick Hayden, Sepehr Nezami, Grant Salton, and Barry C Sanders · 2016
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Damián Pitalúa-García · 2016
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Fundamental quantum optics experiments conceivable with satellites reaching relativistic distances and velocities
David Rideout, Thomas Jennewein, Giovanni Amelino-Camelia, Tommaso F Demarie, Brendon L Higgins, Achim Kempf, Adrian Kent, Raymond Laflamme, Xian Ma, Robert B Mann, et al · 2012
Cited alongside, same era.
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Jonathan Barrett, Roger Colbeck, and Adrian Kent · 2012
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Jérôme Javelle, Mehdi Mhalla, and Simon Perdrix · 2012
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Eduardo Martin-Martinez, David Aasen, and Achim Kempf · 2013
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Adrian Kent · 2013
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Adrian Kent
Cited in the paper.
[Online; accessed 1-October-2017 ]
Is there a studied notion of party independent transfer? https://crypto.stackexchange.com/questions/44256/is-there-a-studied-notion-of-party-independent-transfer · 2017
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Fast quantum computation at arbitrarily low energy
Stephen P Jordan · 2017
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Unconstrained summoning for relativistic quantum information processing
Adrian Kent · 2018
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Efficient code for relativistic quantum summoning
Ya-Dong Wu, Abdullah Khalid, and Barry C Sanders · 2018
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