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20202026
most citedEntanglement and Absorbing-State Transitions in Interactive Quantum Dynamics

43 citations · 100 across the 10 of their papers we have counts for

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cond-mat.stat-mech2024

Entanglement Oscillations from Many-Body Quantum Scars

Nicholas O'Dea, Adithya Sriram

Quantum scars are nonthermal eigenstates that prevent thermalization of initial states with weight on the scars. When the scar states are equally spaced in energy, superpositions o…

cond-mat.stat-mech2024

Absorbing state transitions with long-range annihilation

Nicholas O'Dea, Sayak Bhattacharjee, Sarang Gopalakrishnan +1

We introduce a family of classical stochastic processes describing diffusive particles undergoing branching and long-range annihilation in the presence of a parity constraint. The…

cond-mat.stat-mech2024

Level statistics detect generalized symmetries

Nicholas O'Dea

Level statistics are a useful probe for detecting symmetries and distinguishing integrable and non-integrable systems. I show by way of several examples that level statistics detec…

cond-mat.stat-mech2023★ 13 cited

Prethermal stability of eigenstates under high frequency Floquet driving

Nicholas O'Dea, Fiona Burnell, Anushya Chandran +1

Systems subject to high-frequency driving exhibit Floquet prethermalization, that is, they heat exponentially slowly on a time scale that is large in the drive frequency, $τ_{\rm h…

cond-mat.stat-mech2023★ 21 cited

Hydrodynamics in long-range interacting systems with center-of-mass conservation

Alan Morningstar, Nicholas O'Dea, Jonas Richter

In systems with a conserved density, the additional conservation of the center of mass (dipole moment) has been shown to slow down the associated hydrodynamics. At the same time, l…

cond-mat.stat-mech2022★ 43 cited

Entanglement and Absorbing-State Transitions in Interactive Quantum Dynamics

Nicholas O'Dea, Alan Morningstar, Sarang Gopalakrishnan +1

Nascent quantum computers motivate the exploration of quantum many-body systems in nontraditional scenarios. For example, it has become natural to explore the dynamics of systems e…