Quantum mechanics redefines information and its fundamental properties. Researchers at Perimeter Institute work to understand the properties of quantum information and study which information processing tasks are feasible, and which are infeasible or impossible. This includes research in quantum cryptography, which studies the trade-off between information extraction and disturbance, and its applications. It also includes research in quantum error correction, which involves the study of methods for protecting information against decoherence. Another important side of the field is studying the application of quantum information techniques and insights to other areas of physics, including quantum foundations and condensed matter.
Format results
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Hybrid quantum information processing and communication
Peter van Loock University of Erlangen-Nuremberg
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Measurement Pattern Interpolation: Theory, and potential applications
Niel de Beaudrap Institute for Quantum Computing (IQC)
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Computational difficulty of simulation methods: Density Functional Theory, DMRG, and beyond
Norbert Schuch Max Planck Institute for Gravitational Physics - Albert Einstein Institute (AEI)
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MUBS in infinite dimensions: the problematic analogy between L2(R) and C^d
Robin Blume-Kohout Sandia National Laboratories
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SICs, Convex Cones, and Algebraic Sets
Howard Barnum University of New Mexico
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Culs-de-sac and open ends
David Gross Universität zu Köln
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Unitary design: bounds on their size
Andrew Scott Griffith University
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Quantum state tomography from yes/no measurements
Martin Roetteler NEC Laboratories America (Princeton)
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Seeking Symmetries of SIC-POVMs
Markus Grassl Max Planck Institute for the Science of Light