A nonlinear criterion detects coherence transfer in quantum networks with only two measurements of network-state populations, remaining valid even with uncharacterized checkpoint nodes, and is experimentally shown in four- and six-photon entanglement networks.
Title resolution pending
3 Pith papers cite this work. Polarity classification is still indexing.
fields
quant-ph 3verdicts
UNVERDICTED 3representative citing papers
A Python library simulates NV center spin dynamics in diamond with a non-perturbative time-dependent Hamiltonian model that includes realistic pulse constraints and optical initialization/readout to predict fluorescence observables.
Ensemble quantum token protocol benchmarked on IBM processors achieves bank acceptance of forged tokens below 10^{-22} while accepting legitimate tokens above 0.999.
citing papers explorer
-
Coherence Transfer in Quantum Networks
A nonlinear criterion detects coherence transfer in quantum networks with only two measurements of network-state populations, remaining valid even with uncharacterized checkpoint nodes, and is experimentally shown in four- and six-photon entanglement networks.
-
Digital Twin Simulations Toolbox of the Nitrogen-Vacancy Center in Diamond
A Python library simulates NV center spin dynamics in diamond with a non-perturbative time-dependent Hamiltonian model that includes realistic pulse constraints and optical initialization/readout to predict fluorescence observables.
-
Ensemble-Based Quantum Token Protocol Benchmarked on IBM Quantum Processors
Ensemble quantum token protocol benchmarked on IBM processors achieves bank acceptance of forged tokens below 10^{-22} while accepting legitimate tokens above 0.999.