Atomfair Brainwave Hub: SciBase II / Quantum Computing and Technologies / Quantum computing advancements and material innovations

Quantum computing advancements and material innovations

Showing 1-11 of 11 articles

Connecting dark matter fluid dynamics with quantum vortex behavior in superfluids

Via atomic precision defect engineering for room-temperature superconductivity

Reanalyzing failed cold fusion experiments through quantum tunneling dynamics at millikelvin thermal states

**Within attosecond timeframes: Tracking electron dynamics in high-temperature superconductors**

At petapascal pressure regimes: simulating exotic matter states in lab-grown diamond anvils

At Josephson junction frequencies for room-temperature superconductor characterization

At petapascal pressure regimes, what novel superconducting phases emerge in hydrogen-rich compounds?

Connecting dark matter research with quantum fluid dynamics in superfluids

Investigating room-temperature superconductors using 2D material heterostructures

Within attosecond timeframes: Tracking electron dynamics in topological insulator surface states

Synchronizing Josephson junction arrays for terahertz radiation generation