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

Advancements in quantum computing and materials

Showing 181-192 of 265 articles

Synthesizing Byzantine mathematics with quantum algorithms for error-corrected computing architectures

Employing silicon photonics co-integration for ultra-low-power quantum computing architectures

Using 2D material heterostructures for ultra-low-power quantum computing devices

Exploring quantum entanglement at terahertz oscillation frequencies in superconducting circuits

Predicting stellar evolution timescales using quantum computing simulations of nuclear fusion

In quantum vacuum fluctuations for novel propulsion system concepts

Within quantum coherence windows, how do topological qubits outperform traditional superconducting qubits?

Planning 22nd century legacy systems via quantum annealing methods for urban traffic networks

Using 2D material heterostructures for ultra-efficient quantum computing components

In quantum vacuum fluctuations near superconducting qubit architectures

Quantum error correction strategies at the thermodynamic coherence limits of qubits

For femtosecond pulse interactions in non-equilibrium quantum materials under strong light-matter coupling