Cylindrical matter is a new beyond-quantum model that faithfully reproduces measurement statistics of some quantum pure-Ising systems with interactions decaying faster than 1/r^{3D/2}, allowing classical simulation.
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Explicit computation of the classical simulation threshold λ for arbitrary diagonal two-qubit gates, identifying families of states with simulable phases on finite-degree graphs.
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Cylindrical Matter: A beyond-quantum many-body system for efficient classical simulation of quantum pure-Ising like systems
Cylindrical matter is a new beyond-quantum model that faithfully reproduces measurement statistics of some quantum pure-Ising systems with interactions decaying faster than 1/r^{3D/2}, allowing classical simulation.
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Classically efficient regimes in measurement based quantum computation performed using diagonal two qubit gates and cluster measurements
Explicit computation of the classical simulation threshold λ for arbitrary diagonal two-qubit gates, identifying families of states with simulable phases on finite-degree graphs.