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Quantum resource theories provide a mathematically rigorous way of understanding the nature of various quantum resources.
“Quantum states with einstein-podolsky-rosen correlations admitting a hidden-variable model”
Reinhard F. Werner · 1989
Earlier work this paper cites.
“Quantum cryptography based on bell’s theorem”
Artur K. Ekert · 1991
Earlier work this paper cites.
“Communication via one- and two-particle operators on einstein-podolsky-rosen states”
Charles H. Bennett and Stephen J. Wiesner · 1992
Earlier work this paper cites.
“Teleporting an unknown quantum state via dual classical and einstein-podolsky-rosen channels”
Charles H. Bennett, Gilles Brassard, Claude Crépeau, Richard Jozsa, Asher Peres, and William K. Wootters · 1993
Earlier work this paper cites.
“Quantum nonlocality as an axiom”
S Popescu and D Rohrlich · 1994
Earlier work this paper cites.
“Degree of entanglement”
Abner Shimony · 1995
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“Concentrating partial entanglement by local operations”
Charles H. Bennett, Herbert J. Bernstein, Sandu Popescu, and Benjamin Schumacher · 1996
Earlier work this paper cites.
“Purification of noisy entanglement and faithful teleportation via noisy channels”
Charles H. Bennett, Gilles Brassard, Sandu Popescu, Benjamin Schumacher, John A. Smolin, and William K. Wootters · 1996
Earlier work this paper cites.
“Quantum privacy amplification and the security of quantum cryptography over noisy channels”
David Deutsch, Artur Ekert, Richard Jozsa, Chiara Macchiavello, Sandu Popescu, and Anna Sanpera · 1996
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“Quantifying entanglement”
V. Vedral, M. B. Plenio, M. A. Rippin, and P. L. Knight · 1997
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“Entanglement of formation of an arbitrary state of two qubits”
William K. Wootters · 1998
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“Conditions for a class of entanglement transformations”
M. A. Nielsen · 1999
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“Entanglement of pure states for a single copy”
Guifré Vidal · 1999
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“Minimal conditions for local pure-state entanglement manipulation”
Daniel Jonathan and Martin B. Plenio · 1999
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“Quantum nonlocality without entanglement”
Charles H. Bennett, David P. DiVincenzo, Christopher A. Fuchs, Tal Mor, Eric Rains, Peter W. Shor, John A. Smolin, and William K. Wootters · 1999
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“Robustness of entanglement”
Guifré Vidal and Rolf Tarrach · 1999
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“Optimal local preparation of an arbitrary mixed state of two qubits: Closed expression for the single-copy case”
Guifré Vidal · 2000
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“Approximate transformations and robust manipulation of bipartite pure-state entanglement”
Guifré Vidal, Daniel Jonathan, and M. A. Nielsen · 2000
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“Entanglement monotones”
Guifré Vidal · 2000
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“Practical scheme for entanglement concentration”
Zhi Zhao, Jian-Wei Pan, and M. S. Zhan · 2001
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“Concentration and purification scheme for two partially entangled photon pairs”
Takashi Yamamoto, Masato Koashi, and Nobuyuki Imoto · 2001
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“Entanglement purification for quantum communication”
JW Pan, C Simon, C Brukner, and A Zeilinger · 2001
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“Long-distance quantum communication with atomic ensembles and linear optics”
LM Duan, MD Lukin, JI Cirac, and P Zoller · 2001
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“Monotones and invariants for multi-particle quantum states”
H Barnum and N Linden · 2001
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“Reversible transformations from pure to mixed states and the unique measure of information”
Michał Horodecki, Paweł Horodecki, and Jonathan Oppenheim · 2003
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“Generalized robustness of entanglement”
Michael Steiner · 2003
Earlier work this paper cites.
“Robustness of quantum gates in the presence of noise”
Aram W. Harrow and Michael A. Nielsen · 2003
Earlier work this paper cites.
“Geometric measure of entanglement and applications to bipartite and multipartite quantum states”
Tzu-Chieh Wei and Paul M. Goldbart · 2003
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“Optimal teleportation with a mixed state of two qubits”
Frank Verstraete and Henri Verschelde · 2003
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“Efficient high-fidelity quantum computation using matter qubits and linear optics”
Sean D. Barrett and Pieter Kok · 2005
Earlier work this paper cites.
“Popescu-rohrlich correlations as a unit of nonlocality”
Jonathan Barrett and Stefano Pironio · 2005
Earlier work this paper cites.
“Nonlocal correlations as an information-theoretic resource”
Jonathan Barrett, Noah Linden, Serge Massar, Stefano Pironio, Sandu Popescu, and David Roberts · 2005
Earlier work this paper cites.
“Connecting the generalized robustness and the geometric measure of entanglement”
Daniel Cavalcanti · 2006
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“The resource theory of quantum reference frames: manipulations and monotones”
Gilad Gour and Robert W Spekkens · 2008
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“Measurement-based entanglement under conditions of extreme photon loss”
Earl T. Campbell and Simon C. Benjamin · 2008
Cited alongside, same era.
“Transforming quantum operations: Quantum supermaps”
G. Chiribella, G. M. D'Ariano, and P. Perinotti · 2008
Cited alongside, same era.
“Quantum entanglement”
Ryszard Horodecki, Paweł Horodecki, Michał Horodecki, and Karol Horodecki · 2009
Cited alongside, same era.
“Measuring the quality of a quantum reference frame: The relative entropy of frameness”
Gilad Gour, Iman Marvian, and Robert W. Spekkens · 2009
Cited alongside, same era.
“Max- relative entropy of entanglement, alias log robustness”
Nilanjana Datta · 2009
Cited alongside, same era.
“Linking a distance measure of entanglement to its convex roof”
Alexander Streltsov, Hermann Kampermann, and Dagmar Bruß · 2010
Cited alongside, same era.
“Extremal distributions under approximate majorization”
Michał Horodecki, Jonathan Oppenheim, and Carlo Sparaciari · 2018
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“Quantum resource theories”
Eric Chitambar and Gilad Gour · 2019
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“Resource theory of asymmetric distinguishability”
Xin Wang and Mark M. Wilde · 2019
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“Operational advantage of quantum resources in subchannel discrimination”
Ryuji Takagi, Bartosz Regula, Kaifeng Bu, Zi-Wen Liu, and Gerardo Adesso · 2019
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“General resource theories in quantum mechanics and beyond: Operational characterization via discrimination tasks”
Ryuji Takagi and Bartosz Regula · 2019
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“General resource theories in quantum mechanics and beyond: Operational characterization via discrimination tasks”
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“(Quantumness in the context of) Resource Theories”
Michal Horodecki and Jonathan Oppenheim · 2013
Cited alongside, same era.
“Resource theory of quantum states out of thermal equilibrium”
Fernando G. S. L. Brandão, Michał Horodecki, Jonathan Oppenheim, Joseph M. Renes, and Robert W. Spekkens · 2013
Cited alongside, same era.
“Quantifying coherence”
T. Baumgratz, M. Cramer, and M. B. Plenio · 2014
Cited alongside, same era.
“Freely scalable quantum technologies using cells of 5-to-50 qubits with very lossy and noisy photonic links”
Naomi H. Nickerson, Joseph F. Fitzsimons, and Simon C. Benjamin · 2014
Cited alongside, same era.
“Bell nonlocality”
Nicolas Brunner, Daniel Cavalcanti, Stefano Pironio, Valerio Scarani, and Stephanie Wehner · 2014
Cited alongside, same era.
“Bell nonlocality”
Nicolas Brunner, Daniel Cavalcanti, Stefano Pironio, Valerio Scarani, and Stephanie Wehner · 2014
Cited alongside, same era.
Ryuji Takagi and Bartosz Regula · 2019
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“Quantum coherence and state conversion: theory and experiment”
Kang-Da Wu, Thomas Theurer, Guo-Yong Xiang, Chuan-Feng Li, Guang-Can Guo, Martin B. Plenio, and Alexander Streltsov · 2020
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“No-go theorems for quantum resource purification”
Kun Fang and Zi-Wen Liu · 2020
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“Catalyst-assisted probabilistic coherence distillation for mixed states”
C. L. Liu and D. L. Zhou · 2020
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“Benchmarking one-shot distillation in general quantum resource theories”
Bartosz Regula, Kaifeng Bu, Ryuji Takagi, and Zi-Wen Liu · 2020
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“Principles of quantum communication theory: A modern approach” (2020)
Sumeet Khatri and Mark M. Wilde · 2020
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“Type-independent characterization of spacelike separated resources”
Denis Rosset, David Schmid, and Francesco Buscemi · 2020
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“Quantifying bell: the resource theory of nonclassicality of common-cause boxes”
Elie Wolfe, David Schmid, Ana Belé n Sainz, Ravi Kunjwal, and Robert W. Spekkens · 2020
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“Operational resource theory of imaginarity”
Kang-Da Wu, Tulja Varun Kondra, Swapan Rana, Carlo Maria Scandolo, Guo-Yong Xiang, Chuan-Feng Li, Guang-Can Guo, and Alexander Streltsov · 2021
Closest in time.
“Resource theory of imaginarity: Quantification and state conversion”
Kang-Da Wu, Tulja Varun Kondra, Swapan Rana, Carlo Maria Scandolo, Guo-Yong Xiang, Chuan-Feng Li, Guang-Can Guo, and Alexander Streltsov · 2021
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“Probabilistic transformations of quantum resources” (2021)
Bartosz Regula · 2021
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“Fundamental limitations on distillation of quantum channel resources”
Bartosz Regula and Ryuji Takagi · 2021
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“Symmetric distinguishability as a quantum resource”
Robert Salzmann, Nilanjana Datta, Gilad Gour, Xin Wang, and Mark M Wilde · 2021
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“One-shot manipulation of dynamical quantum resources”
Bartosz Regula and Ryuji Takagi · 2021
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“Real quantum operations and state transformations” (2022)
Tulja Varun Kondra, Chandan Datta, and Alexander Streltsov · 2022
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“Optimizing quantum codes with an application to the loss channel with partial erasure information”
Benjamin Desef and Martin B. Plenio · 2022
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“A smallest computable entanglement monotone”
Jens Eisert and Mark M. Wilde · 2022
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“Tight constraints on probabilistic convertibility of quantum states”
Bartosz Regula · 2022
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“Approximate distillation of quantum coherence”
C. L. Liu and C. P. Sun · 2022
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“Distance-based resource quantification for sets of quantum measurements” (2022)
Lucas Tendick, Martin Kliesch, Hermann Kampermann, and Dagmar Bruß · 2022
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“New additivity properties of the relative entropy of entanglement and its generalizations” (2022)
Roberto Rubboli and Marco Tomamichel · 2022
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“On a gap in the proof of the generalised quantum Stein’s lemma and its consequences for the reversibility of quantum resources”
Mario Berta, Fernando G. S. L. Brandão, Gilad Gour, Ludovico Lami, Martin B. Plenio, Bartosz Regula, and Marco Tomamichel · 2023
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Roberto Rubboli, Ryuji Takagi, and Marco Tomamichel · 2023
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“Overcoming entropic limitations on asymptotic state transformations through probabilistic protocols”
Bartosz Regula, Ludovico Lami, and Mark M. Wilde · 2023
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“Every quantum helps: Operational advantage of quantum resources beyond convexity”
Kohdai Kuroiwa, Ryuji Takagi, Gerardo Adesso, and Hayata Yamasaki · 2024
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“Robustness- and weight-based resource measures without convexity restriction: Multicopy witness and operational advantage in static and dynamical quantum resource theories”
Kohdai Kuroiwa, Ryuji Takagi, Gerardo Adesso, and Hayata Yamasaki · 2024
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“Quantum resource theories beyond convexity” (2024)
Roberto Salazar, Jakub Czartowski, Ricard Ravell Rodríguez, Grzegorz Rajchel-Mieldzioć, Paweł Horodecki, and Karol Życzkowski · 2024
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“Reversibility of quantum resources through probabilistic protocols” (2024)
Bartosz Regula and Ludovico Lami · 2024
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