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quant-ph2026

Noise robustness of three outcome Bell certified quantum randomness

Raffaele D'Avino, Ignacio Perito, Piotr Mironowicz +2

We investigate device-independent certification of global randomness based on Bell inequality violations in bipartite scenarios with three outcomes per party. Our goal is to determ…

quant-ph2026

All pure entangled states can lead to fully nonlocal correlations

Martin J. Renner, Edwin Peter Lobo, Arturo Konderak +2

It is a well-established fact that some quantum correlations can be nonlocal, meaning that they cannot be described by a local hidden variable model. Certain quantum correlations h…

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

Lindbladian Learning with Neural Differential Equations

Timothy Heightman, Roman Aseguinolaza Gallo, Edward Jiang +3

Inferring the dynamical generator of a many-body quantum system from measurement data is essential for the verification, calibration, and control of quantum processors. When the sy…

quant-ph2026

Local Certification of Many-Body Steady States

Miguel Frías Pérez, Antonio Acín

We present a relaxation-based method to bound expectation values on the steady state of dissipative many-body quantum systems described by master equations of the Lindblad form. In…

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…