Atomfair Brainwave Hub: SciBase II / Quantum Computing and Technologies / Quantum computing and coherence dynamics

Quantum computing and coherence dynamics

Showing 37-48 of 61 articles

Investigating quantum coherence limits in room-temperature superconductors for energy transmission

Optimizing quantum coherence in Josephson junctions for high-frequency superconducting circuits

Investigating quantum decoherence in photosynthetic complexes via femtosecond laser ablation

Within quantum coherence windows for error-corrected photonic computing

Within quantum coherence windows: optimizing qubit performance in noisy intermediate-scale devices

At spin relaxation timescales, probing quantum coherence in molecular qubits

Exploring protein misfolding dynamics within quantum coherence windows for neurodegenerative disease insights

In single-molecule systems: achieving room-temperature quantum coherence for computing

For brain-computer interfaces at quantum coherence limits to enhance neural signal fidelity

Bridging quantum biology with information theory to model neural decision-making

For photonic quantum memory using rare-earth-doped nanostructured waveguides

At quantum coherence limits for fault-tolerant lunar base infrastructure