5 papers · 1 filter
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…
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…
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…
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…
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…