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

Advancements in quantum computing and materials

Showing 25-36 of 265 articles

At spin relaxation timescales for fault-tolerant topological quantum memory

Fusing Byzantine mathematics with quantum algorithms for error correction

At spin relaxation timescales in room-temperature qubits

Enhancing neutrino detection sensitivity using quantum metamaterial absorbers

Enhancing quantum computing efficiency within quantum coherence windows using error-corrected qubits

Fusing origami mathematics with robotics for photonic quantum memory

Decoding quantum gravity effects in Planck-scale approximations using explainability through disentanglement

Accelerating catalyst discovery for green hydrogen production via quantum computing simulations

Employing silicon photonics co-integration for next-gen quantum computing

Via atomic precision defect engineering to optimize high-temperature superconductor performance

At quantum coherence limits: engineering room-temperature topological qubits for fault-tolerant computing

Attosecond spectroscopy of quantum vacuum fluctuations in lab-created black hole analogs