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 1 - 12 of 428
Format results
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Circuit-to-Hamiltonian from tensor networks and fault tolerance
Harvard University -
Randomly Monitored Quantum Codes
Perimeter Institute for Theoretical Physics -
Reducing the overhead of quantum error correction
Yale University -
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Hardware-efficient quantum computing using qudits
Institute for Quantum Computing (IQC) -
Concatenate codes, save qubits
University of Tokyo -
An Efficient Quantum Algorithm for Port-based Teleportation
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Stanford University
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Stanford University
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Heisenberg-Limited Quantum Metrology without Ancilla (VIRTUAL)
University of Hong Kong (HKU) -
How fast can one route quantum states
University of Colorado Boulder -
Towards preparation of scattering wave packets of hadrons on a quantum computer
University of Washington -
Quantum Advantages in Energy Minimization - VIRTUAL ONLY
California Institute of Technology (Caltech) -
Every quantum helps: Operational advantage of quantum resources beyond convexity
Perimeter Institute for Theoretical Physics