most citedSymmetric tensor scars with tunable entanglement from volume to area law

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

collaborators

8 papers

quant-ph2026

Diameter truncated operator evolution

Tom Holden-Dye, Max Marvell, Joel Mills +2

We present a method for simulating operator dynamics in out-of-equilibrium quantum systems. Due to the rapid growth of complexity in these systems, this is typically speaking an in…

cond-mat.str-el20261 cited

Symmetric tensor scars with tunable entanglement from volume to area law

Bhaskar Mukherjee, Christopher J. Turner, Marcin Szyniszewski +1

Teleportation of quantum information over long distances requires robust entanglement on the macroscopic scale. The construction of highly energetic eigenstates with tunable long-r…

quant-ph2025

Operator space fragmentation in perturbed Floquet-Clifford circuits

Marcell D. Kovács, Christopher J. Turner, Lluis Masanes +1

Floquet quantum circuits are able to realise a wide range of non-equilibrium quantum states, exhibiting quantum chaos, topological order and localisation. In this work, we investig…

quant-ph2025

Measurement-induced Lévy flights of quantum information

Igor Poboiko, Marcin Szyniszewski, Christopher J. Turner +3

We explore a model of free fermions in one dimension, subject to frustrated (non-commuting) local measurements across adjacent sites, which resolves the fermions into non-orthogona…

quant-ph2025

Dynamic syndrome decoder in volume-law phases of hybrid quantum circuits

Dawid Paszko, Marcin Szyniszewski, Arijeet Pal

Phases of matter with volume-law entanglement are frequently observed in quantum circuits and have numerous applications, ranging from deepening our understanding of quantum mechan…

quant-ph2025

Operator-space fragmentation and integrability in Pauli-Lindblad models

Dawid Paszko, Christopher J. Turner, Dominic C. Rose +1

The Lindblad equation for open quantum systems is central to our understanding of coherence and entanglement in the presence of Markovian dissipation. In closed quantum systems Hil…