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quant-ph2025

Measuring unitary invariants with the quantum switch

Pedro C. Azado, Rafael Wagner, Rui S. Barbosa +1

Bargmann invariants, multivariate traces of states, completely characterize any unitary-invariant property of a set of states. Unitary invariants enable the description of quantum…

quant-ph2025

Expressibility, entangling power and quantum average causal effect for causally indefinite circuits

Pedro C. Azado, Guilherme I. Correr, Alexandre Drinko +3

Parameterized quantum circuits are the core of new technologies such as variational quantum algorithms and quantum machine learning, which makes studying its properties a valuable…

quant-ph2025

Characterizing randomness in parameterized quantum circuits through expressibility and average entanglement

Guilherme Ilário Correr, Ivan Medina, Pedro C. Azado +2

While scalable error correction schemes and fault tolerant quantum computing seem not to be universally accessible in the near sight, the efforts of many researchers have been dire…

quant-ph2024

Benchmarking Variational Quantum Eigensolvers for Entanglement Detection in Many-Body Hamiltonian Ground States

Alexandre Drinko, Guilherme I. Correr, Ivan Medina +3

Variational quantum algorithms (VQAs) have emerged in recent years as a promise to obtain quantum advantage. These task-oriented algorithms work in a hybrid loop combining a quantu…

quant-ph2024

Variational-quantum-eigensolver-inspired optimization for spin-chain work extraction

Ivan Medina, Alexandre Drinko, Guilherme I. Correr +2

The energy extraction from quantum sources is a key task to develop new quantum devices such as quantum batteries (QB). In this context, one of the main figures of merit is the erg…

quant-ph2024

Optimal complexity of parameterized quantum circuits

Guilherme Ilário Correr, Pedro C. Azado, Diogo O. Soares-Pinto +1

Parameterized quantum circuits play a key role for the development of quantum variational algorithms in the realm of the NISQ era. Knowing their actual capability of performing dif…