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20242026
most citedDynamics of entanglement fluctuations and quantum Mpemba effect in the QSSEP model

2 citations · 2 across the 7 of their papers we have counts for

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quant-ph2026

An asymmetry lower bound on fermionic non-Gaussianity

Filiberto Ares, Michele Mazzoni, Sara Murciano +3

Fermionic Gaussian states are a fundamental tool in many-body physics, faithfully representing non-interacting quantum systems and allowing for efficient numerical simulations. Giv…

quant-ph2026

Probing Entanglement and Symmetries in Random States Using a Superconducting Quantum Processor

Jia-Nan Yang, Lata Kh Joshi, Filiberto Ares +3

Quantum many-body systems display an extraordinary degree of complexity, yet many of their features are universal: they depend not on microscopic details, but on a few fundamental…

quant-ph2025

Measuring full counting statistics in a trapped-ion quantum simulator

Lata Kh Joshi, Filiberto Ares, Manoj K. Joshi +2

In quantum mechanics, the probability distribution function (PDF) and full counting statistics (FCS) play a fundamental role in characterizing the fluctuations of quantum observabl…

quant-ph2025

Symmetry breaking in chaotic many-body quantum systems at finite temperature

Angelo Russotto, Filiberto Ares, Pasquale Calabrese

Recent work has shown that the entanglement of finite-temperature eigenstates in chaotic quantum many-body local Hamiltonians can be accurately described by an ensemble of random s…

quant-ph2025

Quench dynamics of entanglement entropy under projective charge measurements: the free fermion case

Riccardo Travaglino, Colin Rylands, Pasquale Calabrese

We consider the effect of projective measurements on the quench dynamics of the bipartite entanglement entropy in one dimensional free fermionic systems. In our protocol, we consid…

quant-ph2025

Quench dynamics of negativity Hamiltonians

Riccardo Travaglino, Colin Rylands, Pasquale Calabrese

In this paper, we investigate the quench dynamics of the negativity and fermionic negativity Hamiltonians in free fermionic systems. We do this by generalizing a recently developed…