New substrate design principles advance scalable superconducting quantum materials
Researchers outline substrate design principles to grow phase-pure superconducting vanadium silicide films on hafnium oxide, advancing scalable quantum hardware
Researchers outline substrate design principles to grow phase-pure superconducting vanadium silicide films on hafnium oxide, advancing scalable quantum hardware
In a significant step toward integrating quantum technologies with global communications networks, a collaborative team of scientists has engineered a…
In an effort to safeguard digital communications from increasingly sophisticated cyberattacks, researchers have successfully demonstrated a novel quantum encryption method…
Scientists have developed novel artificial intelligence frameworks that can solve some of the most complex and stubborn equations in physics.…
Irène and Frédéric Joliot-Curie pioneered artificial radioactivity, earning the 1935 Nobel Prize in Chemistry and advancing nuclear medicine and cancer treatment
Scientists at CERN test White Rabbit timing over the same optical fiber as entangled photons to synchronize quantum networks with sub-nanosecond accuracy
A novel technique that creates a unique “fingerprint” for objects using wave physics allows researchers to find them even when…
For decades, scientists have operated under the assumption that supercritical fluids—substances heated and pressurized beyond their critical point where distinct…
Quantum entanglement links particles instantly across distance, underpinning quantum computing, secure communication, and ultra sensitive sensors, with Bell tests confirming the link
A hybrid quantum-classical model enhances early Alzheimer’s diagnosis by classifying MRI brain scans, trained on ADNI1 and ADNI2 data for robust prediction