Density-density interactions transfer bath-induced non-reciprocity to uncoupled degrees of freedom, inducing directional drift in open quantum many-body systems.
Title resolution pending
4 Pith papers cite this work. Polarity classification is still indexing.
citation-role summary
citation-polarity summary
fields
quant-ph 4years
2026 4verdicts
UNVERDICTED 4roles
background 1polarities
background 1representative citing papers
Nonreciprocity combined with open boundaries and symmetry defects produces a domain-wall traveling-wave phase and anomalous chiral relaxation in open quantum systems.
Loss-induced phases in auxiliary cavities create asymmetric interference, yielding tunable nonreciprocal couplings and entanglement between remote transmon qubits.
Squeezing-induced symmetry breaking exponentially amplifies nonreciprocity in cavity-reservoir systems, boosting quantum battery metrics and optical isolation by orders of magnitude.
citing papers explorer
-
Interaction-Mediated Non-Reciprocal Dynamics in Open Quantum Systems: From an Exactly Solvable Model to Generic Behavior
Density-density interactions transfer bath-induced non-reciprocity to uncoupled degrees of freedom, inducing directional drift in open quantum many-body systems.
-
Nonreciprocity-enriched steady phases in open quantum systems
Nonreciprocity combined with open boundaries and symmetry defects produces a domain-wall traveling-wave phase and anomalous chiral relaxation in open quantum systems.
-
Loss-induced quantum nonreciprocity and entanglement in superconducting qubits
Loss-induced phases in auxiliary cavities create asymmetric interference, yielding tunable nonreciprocal couplings and entanglement between remote transmon qubits.
-
Enhancing Nonreciprocity through Squeezing-Induced Symmetry Breaking
Squeezing-induced symmetry breaking exponentially amplifies nonreciprocity in cavity-reservoir systems, boosting quantum battery metrics and optical isolation by orders of magnitude.