Quantum jump correlations and waiting-time distributions in long-range dissipative spins display clear signatures of the paramagnetic-to-ferromagnetic transition when analyzed with tilted Lindbladian, cluster mean-field, and cumulant expansion methods.
Title resolution pending
3 Pith papers cite this work. Polarity classification is still indexing.
citation-role summary
citation-polarity summary
fields
quant-ph 3verdicts
UNVERDICTED 3roles
background 1polarities
background 1representative citing papers
A blockade-restricted long-range model for Rydberg-cavity systems yields a distinct blockaded ferromagnetic/superradiant phase at equilibrium and long-range many-body scars with logarithmic entanglement dynamics out of equilibrium.
A quantum solver for PDEs is introduced via flexible matrix product operator representations with mid-circuit measurements and state-dependent norm correction to handle non-unitary dynamics.
citing papers explorer
-
Quantum jump correlations in long-range dissipative spin systems via cluster and cumulant expansions
Quantum jump correlations and waiting-time distributions in long-range dissipative spins display clear signatures of the paramagnetic-to-ferromagnetic transition when analyzed with tilted Lindbladian, cluster mean-field, and cumulant expansion methods.
-
Kinetically constrained cavity QED: from blockaded ferromagnetism to long-range quantum scars
A blockade-restricted long-range model for Rydberg-cavity systems yields a distinct blockaded ferromagnetic/superradiant phase at equilibrium and long-range many-body scars with logarithmic entanglement dynamics out of equilibrium.
-
Tensor-Programmable Quantum Circuits for Solving Differential Equations
A quantum solver for PDEs is introduced via flexible matrix product operator representations with mid-circuit measurements and state-dependent norm correction to handle non-unitary dynamics.