activity
20182025
most citedLiouvillian exceptional points of any order in dissipative linear bosonic systems: Coherence functions and switching between and anti- symmetries

73 citations · 78 across the 3 of their papers we have counts for

collaborators

19 papers

quant-ph2025

Chaos and thermalization in open quantum systems

Filippo Ferrari, Vincenzo Savona, Fabrizio Minganti

The eigenstate thermalization hypothesis (ETH) provides a cornerstone for understanding thermalization in isolated quantum systems, linking quantum chaos with statistical mechanics…

quant-ph2025

Variational Perturbation Theory in Open Quantum Systems for Efficient Steady State Computation

André Melo, Gaspard Beugnot, Fabrizio Minganti

Determining the steady state of an open quantum system is crucial for characterizing quantum devices and studying various physical phenomena. Often, computing a single steady state…

quant-ph2025

Chiral cat code: Enhanced error correction induced by higher-order nonlinearities

Adrià Labay-Mora, Alberto Mercurio, Vincenzo Savona +2

We introduce a Schrödinger chiral cat qubit, a novel bosonic quantum code generalizing Kerr cat qubits that exploits higher-order nonlinearities. Compared to a standard Kerr cat, t…

quant-ph2024

Chaos in Time: A Dissipative Continuous Quasi Time Crystals

Parvinder Solanki, Fabrizio Minganti

While a generic open quantum system decays to its steady state, continuous time crystals (CTCs) develop spontaneous oscillation and never converge to a stationary state. Just as cr…

cond-mat.dis-nn2024

How to realize compact and non-compact localized states in disorder-free hypercube networks

Ievgen I. Arkhipov, Fabrizio Minganti, Franco Nori

We present a method for realizing various zero-energy localized states on disorder-free hypercube graphs. Previous works have already indicated that disorder is not essential for o…

quant-ph2024

Criticality-Enhanced Quantum Sensing with a Parametric Superconducting Resonator

Guillaume Beaulieu, Fabrizio Minganti, Simone Frasca +4

Quantum metrology, a cornerstone of quantum technologies, exploits entanglement and superposition to achieve higher precision than classical protocols in parameter estimation tasks…