Faculty profile
Robert Raussendorf
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Research
Latest papers
Counterintuitive Yet Efficient Regimes for Measurement-Based Quantum Computation on Symmetry-Protected Spin Chains.
Physical review letters · 2024 · senior author
Universal Measurement-Based Quantum Computation in a One-Dimensional Architecture Enabled by Dual-Unitary Circuits.
Physical review letters · 2024
Hidden Variable Model for Universal Quantum Computation with Magic States on Qubits.
Physical review letters · 2020 · senior author
Latest funding
- $56,774
SIMULATING QUANTUM CIRCUITS---UNDERSTANDING THE ROLES OF WIGNER NEGATIVITY, SYMMETRY, AND SYMMETRY BREAKING
NSERC · 2022 · Principal investigator
- $1,348,225
NSERC CREATE in Quantum Computing
NSERC · 2020 · Co-investigator
- $366,000
What gives quantum computers their extra power?
NSERC · 2018 · Principal investigator
11 publications.
Counterintuitive Yet Efficient Regimes for Measurement-Based Quantum Computation on Symmetry-Protected Spin Chains.
Adhikary A, Yang W, Raussendorf R
Universal Measurement-Based Quantum Computation in a One-Dimensional Architecture Enabled by Dual-Unitary Circuits.
Stephen DT, Ho WW, Wei TC, Raussendorf R, Verresen R
Hidden Variable Model for Universal Quantum Computation with Magic States on Qubits.
Zurel M, Okay C, Raussendorf R
Identification of Symmetry-Protected Topological States on Noisy Quantum Computers.
Azses D, Haenel R, Naveh Y, Raussendorf R, Sela E, Dalla Torre EG
Computationally Universal Phase of Quantum Matter.
Raussendorf R, Okay C, Wang DS, Stephen DT, Nautrup HP
Topological Qubits from Valence Bond Solids.
Wang DS, Affleck I, Raussendorf R
Contextuality as a Resource for Models of Quantum Computation with Qubits.
Bermejo-Vega J, Delfosse N, Browne DE, Okay C, Raussendorf R
Computational Power of Symmetry-Protected Topological Phases.
Stephen DT, Wang DS, Prakash A, Wei TC, Raussendorf R
Measurement-based classical computation.
Hoban MJ, Wallman JJ, Anwar H, Usher N, Raussendorf R, Browne DE
Key ideas in quantum error correction.
Raussendorf R
SIMULATING QUANTUM CIRCUITS---UNDERSTANDING THE ROLES OF WIGNER NEGATIVITY, SYMMETRY, AND SYMMETRY BREAKING
Principal investigators: Raussendorf, Robert R
Keywords: contextuality; foundations of quantum mechanics; quantum algorithms; quantum computation; simulation; symmetry; symmetry breaking; symmetry protected topological order; Wigner functions
NSERC CREATE in Quantum Computing
Principal investigators: Chrostowski, Lukas L
Keywords: quantum algorithms; quantum architecture; quantum computing; quantum machine learning; quantum photonics; quantum simulations; quantum software; spin-based qubits; superconducting circuits
What gives quantum computers their extra power?
Principal investigators: Raussendorf, Robert
Quantum computation - fault-tolerance, resources and foundations
Principal investigators: Raussendorf, Robert
Quantum computation - fault-tolerance, resources and foundations
Principal investigators: Raussendorf, Robert
Fault-tolerant quantum computation in realistic physical scenarios
Principal investigators: Raussendorf, Robert
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
Frequent collaborators
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