most citedUniversal Spreading of Nonstabilizerness and Quantum Transport

1 citations · 1 across the 3 of their papers we have counts for

collaborators

11 papers

quant-ph2025

Topological magic response in quantum spin chains

Ritu Nehra, Poetri Sonya Tarabunga, Martina Frau +3

Topological matter provides natural platforms for robust, non-local information storage, central to quantum error correction. Yet, while the relation between entanglement and topol…

quant-ph2025

Robustness of Magic in the quantum Ising chain via Quantum Monte Carlo tomography

Hari Timsina, Yi-Ming Ding, Emanuele Tirrito +5

We study the behavior of magic as a bipartite correlation in the quantum Ising chain across its quantum phase transition, and at finite temperature. In order to quantify the magic…

quant-ph2025

Emergence of Generic Entanglement Structure in Doped Matchgate Circuits

Alessio Paviglianiti, Luca Lumia, Emanuele Tirrito +4

Free fermionic Gaussian, a.k.a. matchgate, random circuits exhibit atypical behavior compared to generic interacting systems. They produce anomalously slow entanglement growth, cha…

quant-ph2025

Magic phase transitions in monitored gaussian fermions

Emanuele Tirrito, Luca Lumia, Alessio Paviglianiti +4

Monitored quantum systems, where unitary dynamics compete with continuous measurements, exhibit dynamical transitions as the measurement rate is varied. These reflect abrupt change…

quant-ph20251 cited

Universal Spreading of Nonstabilizerness and Quantum Transport

Emanuele Tirrito, Poetri Sonya Tarabunga, Devendra Singh Bhakuni +3

We investigate how transport properties of -conserving dynamics impact the growth of quantum resources characterizing the complexity of many-body states. We quantify wave-fun…

quant-ph2025

Role of Nonstabilizerness in Quantum Optimization

Chiara Capecci, Gopal Chandra Santra, Alberto Bottarelli +2

Quantum optimization has emerged as a promising approach for tackling complicated classical optimization problems using quantum devices. However, the extent to which such algorithm…