Researchers demonstrated a light-programmable superconducting (LiPS) state at an aluminium-silicon heterojunction, controlled ...
Terahertz metasensors are promising platforms for quantitative biomolecular fingerprint identification, yet existing implementations lack the capability for quantitative, multi-component analysis.
Researchers achieved ultrafast, picosecond-level strong light-matter coupling using a Fabry–Pérot cavity with crystalline α-lactose, demonstrating dynamic activation via silicon mirrors.
Beyond the standard CSS framework, researchers introduce quantum XYZ stabilizer codes—built from three orthogonal parity-check matrices—to potentially improve decoding, especially for finite-length ...
Axiad Research reveals a disconnect: 75% of enterprises inventory crypto assets, yet 46% lack a PQC migration leader.
Researchers, software developers and technology leaders from across the global quantum computing ecosystem gathered at the Department of Energy’s Oak Ridge National Laboratory in July for the seventh ...
IonQ collaborates with CMC Microsystems, integrating its trapped-ion systems into Canada’s FABrIC Quantum Computing Sandbox.
A unique, positive translation-invariant solution exists for a mixed Ising–XY model on a semi-infinite rooted Cayley tree of ...
Researchers mapped characteristics of quantum machine learning ansatzes using Fourier analysis, published August 18, 2026, in Quantum Science and Technology.
Diraq has opened its first U.S. quantum laboratory in Chicago, expanding its research and development capacity as part of a global push toward utility-scale quantum computing. The facility supports ...
Strong unitary designs, essential for quantum scrambling and algorithm development, can now be generated in optimal ...
Professor Jay Gupta, of Ohio State, explained quantum computing fundamentals on WOSU’s All Sides, detailing how qubits differ from classical bits.
Some results have been hidden because they may be inaccessible to you
Show inaccessible results