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quant-ph2026

Certifying ergotropy under partial information

Egle Pagliaro, Leonardo Zambrano, Mir Alimuddin +3

Ergotropy, the maximum work extractable from a quantum system, is a central resource in quantum physics. Computing ergotropy is well established when the system state is fully know…

quant-ph2026

Certification of quantum properties with imperfect measurements

Leonardo Zambrano, Teodor Parella-Dilmé, Antonio Acín +1

The accurate characterization of quantum systems is essential for the advancement of quantum technologies. In particular, certifying convex functions of quantum states plays a cent…

quant-ph2026

Bounding many-body properties under partial information and finite measurement statistics

Luke Mortimer, Leonardo Zambrano, Antonio Acín +1

Calculating bounds of properties of many-body quantum systems is of paramount importance, since they guide our understanding of emergent quantum phenomena and complement the insigh…

quant-ph2025

Boosting thermalization of classical and quantum many-body systems

Jin-Fu Chen, Kshiti Sneh Rai, Patrick Emonts +5

Understanding and optimizing the relaxation dynamics of many-body systems is essential both for foundational studies in quantum thermodynamics and for applications such as quantum…

quant-ph2025

Spatial Leggett-Garg inequalities

Guillem Müller-Rigat, Guillem Müller-Rigat, Donato Farina +2

We formulate a spatial extension of the Leggett-Garg inequality by considering three distant observers locally measuring a many-body system at three subsequent times. The spatial f…

quant-ph2025

Certifying steady-state properties of open quantum systems

Luke Mortimer, Donato Farina, Grazia Di Bello +4

Estimating the steady-state properties of open many-body quantum systems is a fundamental challenge in quantum science and technologies. In this work, we present a scalable approac…