Description
This series consists of weekly discussion sessions on foundations of quantum theory and quantum information theory. The sessions start with an informal exposition of an interesting topic, research result or important question in the field. Everyone is strongly encouraged to participate with questions and comments.
Displaying 301 - 312 of 428
Format results
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Adding entanglement to quantum error-correcting codes
University of Southern California -
Quantum code with translation and scale symmetries
Perimeter Institute for Theoretical Physics -
Entanglement entropy in the O(N) model
Massachusetts Institute of Technology (MIT) - Department of PhysicsPIRSA:10030032 -
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Unified approach to classical and quantum dualities
Indiana University - Bloomington -
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Adiabatic quantum optimization fails for random instances of NP-complete problems
NEC Laboratories America (Princeton) -
Adiabatic Gate Teleportation and Topological Quantum Computing
University of Washington -
Innovations in Maximum Likelihood Quantum State Tomography
National Institute of Standards & Technology -
The quantum adiabatic theorem and eigenpath traversal
Harvard University -
Quantum State and Process Measurement and Characterization
University of Toronto -
A strong converse for classical channel coding using entangled inputs
Delft University of Technology