Relative motion activates a correlated decoherence channel via Doppler-shifted spectral overlap above the threshold v > 2u_φ, while below threshold the environment acts mainly as a coherent mediator.
Title resolution pending
5 Pith papers cite this work. Polarity classification is still indexing.
citation-role summary
citation-polarity summary
fields
quant-ph 5verdicts
UNVERDICTED 5roles
background 1polarities
background 1representative citing papers
An open quantum system with bosonic modes and reservoirs implements parallel stochastic matrix-vector multiplications whose computation time is independent of input dimension, with results given by stationary energy flows and a direct mapping to electrical crossbar circuits.
Transient precision enhancement in Markovian quantum thermometry requires an initially cold probe and this requirement survives some memory effects but is eliminated by strong non-Markovian collisional dynamics.
Physics-informed quantum neural networks trained on noisy measurements can construct nontrivial decision boundaries to classify quantum states via order parameters and are suited for NISQ hardware due to links with Markovian open many-body systems.
The Lindblad master equation decomposes into free evolution plus generalized charge exchange plus dephasing, unifying strong-coupling, particle-exchange, and non-Abelian effects under one physical structure.
citing papers explorer
-
Correlated decoherence in a common environment activated by relative motion
Relative motion activates a correlated decoherence channel via Doppler-shifted spectral overlap above the threshold v > 2u_φ, while below threshold the environment acts mainly as a coherent mediator.
-
Thermodynamic coprocessor for linear operations with input-size-independent calculation time based on open quantum system
An open quantum system with bosonic modes and reservoirs implements parallel stochastic matrix-vector multiplications whose computation time is independent of input dimension, with results given by stationary energy flows and a direct mapping to electrical crossbar circuits.
-
Precision Enhancement in Transient Quantum Thermometry:Cold-Probe Bias and Its Removal
Transient precision enhancement in Markovian quantum thermometry requires an initially cold probe and this requirement survives some memory effects but is eliminated by strong non-Markovian collisional dynamics.
-
Getting large-scale quantum neural networks ready for quantum hardware
Physics-informed quantum neural networks trained on noisy measurements can construct nontrivial decision boundaries to classify quantum states via order parameters and are suited for NISQ hardware due to links with Markovian open many-body systems.
-
Revealing the physical structure of the general quantum master equation
The Lindblad master equation decomposes into free evolution plus generalized charge exchange plus dephasing, unifying strong-coupling, particle-exchange, and non-Abelian effects under one physical structure.