collaborators

12 papers

quant-ph2026

Gaussian superpositions for bosonic encodings

Federico Centrone, Juan Pablo Paz, Augusto Roncaglia

Non-Gaussian bosonic states are ubiquitous in interacting light--matter systems, many-body platforms, and relativistic quantum field settings, but their quantitative characterizati…

quant-ph2026

A hidden bottleneck in classical and quantum linear reservoir computing

Johannes Nokkala, Federico Centrone, Francesco Arzani

We identify a hidden bottleneck in the information processing capacity of linear reservoir computers. When the measured features evolve linearly in the reservoir and the output is…

quant-ph2026

Quantum timekeeping and the dynamics of scrambling in critical systems

Devjyoti Tripathy, Federico Centrone, Sebastian Deffner

In this work, we develop a quantum metrological framework for quantum chaos by showing that local subsystems of information scrambling systems naturally function as quantum stopwat…

quant-ph2026

A First-Principles Thermodynamic Uncertainty Relation for Shortcuts to Adiabaticity

Guillermo Perna, Federico Centrone, Esteban Calzetta

We study the fundamental limitations of implementing time-dependent Hamiltonian protocols when ''time'' is provided by a quantum clock rather than an external classical parameter.…

quant-ph2026

Ergotropic characterization of continuous variable entanglement

Beatriz Polo-Rodríguez, Federico Centrone, Gerardo Adesso +1

Continuous-variable quantum thermodynamics in the Gaussian regime provides a promising framework for investigating the energetic role of quantum correlations, particularly in optic…

quant-ph2026

Hardware-inspired Continuous Variables Quantum Optical Neural Networks

Todor Krasimirov-Ivanov, Alba Cervera-Lierta, Paolo Stornati +1

Continuous-variables (CV) quantum optics is a natural formalism for neural networks (NNs) due to its ability to reproduce the information processing of such trainable interconnecte…