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quant-ph2025

Symmetry-Accelerated Classical Simulation of Clifford-Dominated Circuits

Giulio Camillo, Filipa C. R. Peres, Markus Heinrich +1

Classical simulation of quantum circuits plays a crucial role in validating quantum hardware and delineating the boundaries of quantum advantage. Among the most effective simulatio…

quant-ph2024

Reducing depth and measurement weights in Pauli-based computation

Filipa C. R. Peres, Ernesto F. Galvão

Pauli-based computation (PBC) is a universal measurement-based quantum computation model steered by an adaptive sequence of independent and compatible Pauli measurements on separab…

quant-ph20244 cited

Certifying nonstabilizerness in quantum processors

Rafael Wagner, Filipa C. R. Peres, Emmanuel Zambrini Cruzeiro +1

Nonstabilizerness, also known as magic, is a crucial resource for quantum computation. The growth in complexity of quantum processing units (QPUs) demands robust and scalable techn…

quant-ph2023

Non-stabilizerness and entanglement from cat-state injection

Filipa C. R. Peres, Rafael Wagner, Ernesto F. Galvão

Recently, cat states have been used to heuristically improve the runtime of a classical simulator of quantum circuits based on the diagrammatic ZX-calculus. Here we investigate the…

quant-ph2023

Pauli-based model of quantum computation with higher-dimensional systems

Filipa C. R. Peres

Pauli-based computation (PBC) is a universal model for quantum computation with qubits where the input state is a magic (resource) state and the computation is driven by a sequence…