Atomfair Brainwave Hub: SciBase II / Quantum Computing and Technologies / Advancements in quantum computing and materials

Advancements in quantum computing and materials

Showing 85-96 of 265 articles

For photonic quantum memory with supernova event readiness protocols

Bridging quantum biology with information theory to decode cellular decision-making mechanisms

Via quantum annealing methods for optimizing post-2100 nuclear waste storage site selection

Autonomous lab assistants for accelerated discovery of 2D material heterostructures

Using topological insulators for spintronics in low-power quantum memory devices

Via quantum annealing methods for optimizing traffic flow algorithms

Within quantum coherence windows for error-corrected photonic quantum computing

Pushing quantum coherence limits in superconducting qubits through interdisciplinary materials science approaches

Using quantum annealing methods to optimize large-scale protein folding simulations

Optimizing catalyst discovery for hydrogen fuel production using quantum computing algorithms

Via quantum annealing methods to optimize high-energy particle detector arrays

At zeptosecond resolution probing electron dynamics in exotic quantum materials