collaborators

10 papers

quant-ph2026

Thermodynamic Networks: Harnessing Non-Equilibrium Steady States for Computation

Patryk Lipka-Bartosik, Gianmichele Blasi, Javier Lalueza Puértolas +3

We introduce thermodynamic networks, a general framework for autonomous, physics-based computation using non-equilibrium steady states. These networks are modeled as a collection o…

quant-ph2026

The minimal example of quantum network Bell nonlocality

Erwan Don, Jessica Bavaresco, Patryk Lipka-Bartosik +3

In recent years, the study of Bell nonlocality has been generalized to quantum networks, where multiple independent sources distribute physical systems to distant parties who perfo…

quant-ph2026

Finite-size catalysis in quantum resource theories

Patryk Lipka-Bartosik, Kamil Korzekwa

Quantum catalysis, the ability to enable previously impossible transformations by using auxiliary systems without degrading them, has emerged as a powerful tool in various resource…

quant-ph2026

Catalytic Activation of Bell Nonlocality

Jessica Bavaresco, Nicolas Brunner, Antoine Girardin +2

The correlations of certain entangled states can be perfectly simulated classically via a local model. Hence such states are termed Bell local, as they cannot lead to Bell inequali…

cond-mat.stat-mech2026

Energy-Time-Accuracy Tradeoffs in Thermodynamic Computing

Alberto Rolandi, Paolo Abiuso, Patryk Lipka-Bartosik +3

In the paradigm of thermodynamic computing, instead of behaving deterministically, hardware undergoes a stochastic process in order to sample from a distribution of interest. While…

quant-ph2025

The power of quantum catalytic local operations

Patryk Lipka-Bartosik, Jessica Bavaresco, Nicolas Brunner +1

A key result in entanglement theory is that the addition of a catalyst dramatically enlarges the set of possible state transformations via local operations and classical communicat…