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The overarching goal of this thesis is to demonstrate that complementarity is at the heart of quantum information theory, that it allows us to make (some) sense of just what information "quantum information" refers to, and that it is useful in understanding and constructing quantum information processing protocols.
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Oliver Kern and Joseph M. Renes, · 2008
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Jean-Christian Boileau and Joseph M. Renes, · 2009
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2010
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2010
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2010
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“The uncertainty principle in the presence of quantum memory,”
Mario Berta, Matthias Christandl, Roger Colbeck, Joseph M. Renes, and Renato Renner, · 2010
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2011
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Robert König and Renato Renner, “Sampling of min-entropy relative to quantum knowledge,” IEEE Transactions on Information Theory 57
2011
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Joseph M. Renes, · 2011
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Joseph M. Renes and Renato Renner, · 2011
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Anindya De, Christopher Portmann, Thomas Vidick, and Renato Renner, “Trevisan’s extractor in the presence of quantum side information,” SIAM Journal on Computing 41
2012
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Joseph M. Renes and Renato Renner, “One-Shot Classical Data Compression with Quantum Side Information and the Distillation of Common Randomness or Secret Keys,” IEEE Transactions on Information Theory 58
2012
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Ligong Wang and Renato Renner, “One-Shot Classical-Quantum Capacity and Hypothesis Testing,” Physical Review Letters 108
2012
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