Continuous monitoring with jump operators forming a deformed unitary 1-design rigorously produces the Scrooge ensemble as the unique late-time equilibrium distribution of quantum trajectories for any target density matrix.
Ueda, Quantum equilibration, thermalization and prethermalization in ultracold atoms, Nat
5 Pith papers cite this work. Polarity classification is still indexing.
citation-role summary
citation-polarity summary
roles
background 1polarities
background 1representative citing papers
Quantization of the classical bistable-potential Mpemba effect shifts anomalous relaxation to ultra-cold temperatures and produces inverse and double-inverse Mpemba effects absent in classical dynamics.
A toolbox for controlling dynamical phase transitions and non-ergodic relaxation in spinor gases via spinor phases, including phase extraction from population dynamics and single-trace interaction inference.
A phase diagram for the diatomic hard-point gas identifies kinetic, intermediate Bogoliubov, and hydrodynamic regimes of thermalization, with consistent heat transport behavior that depends on the order of thermodynamic limits.
Periodic modulation of the trap in a unitary Fermi gas excites a dissipationless breathing mode, leading to out-of-phase energy oscillations that follow the dynamic virial theorem.
citing papers explorer
-
Exact Hilbert-space ergodicity from continuous monitoring
Continuous monitoring with jump operators forming a deformed unitary 1-design rigorously produces the Scrooge ensemble as the unique late-time equilibrium distribution of quantum trajectories for any target density matrix.
-
Quantization of the classical Mpemba effect
Quantization of the classical bistable-potential Mpemba effect shifts anomalous relaxation to ultra-cold temperatures and produces inverse and double-inverse Mpemba effects absent in classical dynamics.
-
Control of dynamical phase transitions and non-ergodic relaxation via spinor phases
A toolbox for controlling dynamical phase transitions and non-ergodic relaxation in spinor gases via spinor phases, including phase extraction from population dynamics and single-trace interaction inference.
-
From Near-Integrable to Far-from-Integrable: A Unified Picture of Thermalization and Heat Transport
A phase diagram for the diatomic hard-point gas identifies kinetic, intermediate Bogoliubov, and hydrodynamic regimes of thermalization, with consistent heat transport behavior that depends on the order of thermodynamic limits.
-
Energy Dynamics of a Nonequilibrium Unitary Fermi Gas
Periodic modulation of the trap in a unitary Fermi gas excites a dissipationless breathing mode, leading to out-of-phase energy oscillations that follow the dynamic virial theorem.