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Stabiliser codes with large weight measurements can be challenging to implement fault-tolerantly.
“Good Quantum Error-Correcting Codes Exist”
A.. Calderbank and Peter. Shor · 1996
Earlier work this paper cites.
“Multiple-Particle Interference and Quantum Error Correction”
Andrew Steane · 1996
Earlier work this paper cites.
“Good Quantum Error-Correcting Codes Exist”
A.. Calderbank and Peter. Shor · 1996
Earlier work this paper cites.
“Multiple-Particle Interference and Quantum Error Correction”
Andrew Steane · 1996
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“Stabilizer Codes and Quantum Error Correction”, 1997
Danie Gottesman · 1997
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“Stabilizer Codes and Quantum Error Correction”, 1997
Danie Gottesman · 1997
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“Quantum Codes on a Lattice with Boundary”, 1998
S.. Bravyi and A. Kitaev · 1998
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“The Heisenberg Representation of Quantum Computers”
D Gottesman · 1998
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“Quantum Codes on a Lattice with Boundary”, 1998
S.. Bravyi and A. Kitaev · 1998
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“The Heisenberg Representation of Quantum Computers”
D Gottesman · 1998
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“Topological Quantum Distillation”
H. Bombin and M.. Martin-Delgado · 2006
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“Determinism in the One-Way Model”
Vincent Danos and Elham Kashefi · 2006
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“Topological Quantum Distillation”
H. Bombin and M.. Martin-Delgado · 2006
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“Determinism in the One-Way Model”
Vincent Danos and Elham Kashefi · 2006
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“Interacting Quantum Observables”
Bob Coecke and Ross Duncan · 2008
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“Finding Flows in the One-Way Measurement Model”
Niel de Beaudrap · 2008
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“Interacting Quantum Observables”
Bob Coecke and Ross Duncan · 2008
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“Finding Flows in the One-Way Measurement Model”
Niel de Beaudrap · 2008
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“ZX-calculus for the Working Quantum Computer Scientist”, 2020
John van Wetering · 2012
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“ZX-calculus for the Working Quantum Computer Scientist”, 2020
John van Wetering · 2012
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“A Graphical Approach to Measurement-Based Quantum Computing”
Ross Duncan · 2013
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“A Graphical Approach to Measurement-Based Quantum Computing”
Ross Duncan · 2013
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“The ZX-calculus Is Complete for Stabilizer Quantum Mechanics”
Miriam Backens · 2014
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“The ZX-calculus Is Complete for Stabilizer Quantum Mechanics”
Miriam Backens · 2014
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“A Universal Completion of the ZX-calculus”, 2017
Kang Ng and Quanlong Wang · 2017
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“A Universal Completion of the ZX-calculus”, 2017
Kang Ng and Quanlong Wang · 2017
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“Diagrammatic Reasoning beyond Clifford+T Quantum Mechanics”
Emmanuel Jeandel, Simon Perdrix and Renaud Vilmart · 2018
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“Diagrammatic Reasoning beyond Clifford+T Quantum Mechanics”
Emmanuel Jeandel, Simon Perdrix and Renaud Vilmart · 2018
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“ZX-calculus and Quantum Stabilizer Theory”, 2019
Coen Borghans · 2019
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“A Near-Minimal Axiomatisation of ZX-calculus for Pure Qubit Quantum Mechanics”
“A Pair Measurement Surface Code on Pentagons”
Craig Gidney · 2023
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“Graphical CSS Code Transformation Using ZX Calculus”
Jiaxin Huang, Sarah Li, Lia Yeh, Aleks Kissinger, Michele Mosca and Michael Vasmer · 2023
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“Relaxing Hardware Requirements for Surface Code Circuits Using Time-dynamics”
Matt McEwen, Dave Bacon and Craig Gidney · 2023
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“Floquetifying the Colour Code”
Alex Townsend-Teague, Julio Magdalena and Markus Kesselring · 2023
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“Unifying Flavors of Fault Tolerance with the ZX Calculus”
Hector Bombin, Daniel Litinski, Naomi Nickerson, Fernando Pastawski and Sam Roberts · 2024
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“Designing Fault-Tolerant Circuits Using Detector Error Models”, 2024
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Renaud Vilmart · 2019
Cited alongside, same era.
“ZX-calculus and Quantum Stabilizer Theory”, 2019
Coen Borghans · 2019
Cited alongside, same era.
“A Near-Minimal Axiomatisation of ZX-calculus for Pure Qubit Quantum Mechanics”
Renaud Vilmart · 2019
Cited alongside, same era.
“The ZX Calculus Is a Language for Surface Code Lattice Surgery”
Niel de Beaudrap and Dominic Horsman · 2020
Cited alongside, same era.
“The ZX Calculus Is a Language for Surface Code Lattice Surgery”
Niel de Beaudrap and Dominic Horsman · 2020
Cited alongside, same era.
“Dynamically Generated Logical Qubits”
Matthew. Hastings and Jeongwan Haah · 2021
Cited alongside, same era.
Christophe Vuillot · 2021
Cited alongside, same era.
Peter-Jan.. Derks, Alex Townsend-Teague, Ansgar. Burchards and Jens Eisert · 2024
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“Error Correction in Dynamical Codes”, 2024
Xiaozhen Fu and Daniel Gottesman · 2024
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“Dynamical Weight Reduction of Pauli Measurements”, 2024
Julio. de Fuente · 2024
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Julio. de Fuente, Josias Old, Alex Townsend-Teague, Manuel Rispler, Jens Eisert and Markus Müller · 2024
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“A Fault-Tolerant Pairwise Measurement-Based Code on Eight Qubits”, 2024
Linnea Grans-Samuelsson, David Aasen and Parsa Bonderson · 2024
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Paul Hilaire, Théo Dessertaine, Boris Bourdoncle, Aurélie Denys, Grégoire de Gliniasty, Gerard Valentí-Rojas and Shane Mansfield · 2024
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“Picturing Quantum Software: An Introduction to the ZX-calculus and Quantum Compilation”
Aleks Kissinger and John van Wetering · 2024
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“Scalable Spider Nests (…or How to Graphically Grok Transversal Non-Clifford Gates)”
Aleks Kissinger and John van Wetering · 2024
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“On the Constant Depth Implementation of Pauli Exponentials”, 2024
Ioana Moflic and Alexandru Paler · 2024
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“Unifying Flavors of Fault Tolerance with the ZX Calculus”
Hector Bombin, Daniel Litinski, Naomi Nickerson, Fernando Pastawski and Sam Roberts · 2024
Closest in time.
“Designing Fault-Tolerant Circuits Using Detector Error Models”, 2024
Peter-Jan.. Derks, Alex Townsend-Teague, Ansgar. Burchards and Jens Eisert · 2024
Closest in time.
“Error Correction in Dynamical Codes”, 2024
Xiaozhen Fu and Daniel Gottesman · 2024
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“Dynamical Weight Reduction of Pauli Measurements”, 2024
Julio. de Fuente · 2024
Closest in time.
Julio. de Fuente, Josias Old, Alex Townsend-Teague, Manuel Rispler, Jens Eisert and Markus Müller · 2024
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“A Fault-Tolerant Pairwise Measurement-Based Code on Eight Qubits”, 2024
Linnea Grans-Samuelsson, David Aasen and Parsa Bonderson · 2024
Closest in time.
Paul Hilaire, Théo Dessertaine, Boris Bourdoncle, Aurélie Denys, Grégoire de Gliniasty, Gerard Valentí-Rojas and Shane Mansfield · 2024
Closest in time.
“Picturing Quantum Software: An Introduction to the ZX-calculus and Quantum Compilation”
Aleks Kissinger and John van Wetering · 2024
Closest in time.
“Scalable Spider Nests (…or How to Graphically Grok Transversal Non-Clifford Gates)”
Aleks Kissinger and John van Wetering · 2024
Closest in time.
“On the Constant Depth Implementation of Pauli Exponentials”, 2024
Ioana Moflic and Alexandru Paler · 2024
Closest in time.