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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

A versatile neural-network toolbox for testing Bell locality in networks

Antoine Girardin, Mohammad Massi Rashidi, Géraldine Haack +3

Determining whether an observed distribution of events generated in a quantum network is Bell local, i.e., if it admits an alternative realization in terms of independent local var…

quant-ph20267 cited

Revealing the fuel of a quantum continuous measurement-based refrigerator

Cyril Elouard, Sreenath K. Manikandan, Andrew N. Jordan +1

While quantum measurements have been shown to constitute a resource for operating quantum thermal machines, the nature of the energy exchanges involved in the interaction between s…

quant-ph2026

Exponential gain in clock precision using quantum correlated ticks

Florian Meier, Yuri Minoguchi, Gianmichele Blasi +2

Creating precise timing devices at ultra-short time scales is not just an important technological challenge, but confronts us with foundational questions about timekeeping's ultima…

quant-ph2025

Transport approach to quantum state tomography

Jeanne Bourgeois, Gianmichele Blasi, Géraldine Haack

Quantum state tomography (QST) is a central task for quantum information processing, enabling quantum cryptography, computation, and state certification. Traditional QST relies on…

quant-ph2025

Current-based metrology with two-terminal mesoscopic conductors

Shishir Khandelwal, Gabriel T. Landi, Géraldine Haack +1

The traditional approach to quantum parameter estimation focuses on the quantum state, deriving fundamental bounds on precision through the quantum Fisher information. In most expe…