Argonne’s Frozen Neon Qubit Discovery Starts a Computing Era
Argonne’s frozen neon discovery provides ultra-low noise qubits for scalable, high-performance quantum computers.
Read More Argonne’s Frozen Neon Qubit Discovery Starts a Computing EraArgonne’s frozen neon discovery provides ultra-low noise qubits for scalable, high-performance quantum computers.
Read More Argonne’s Frozen Neon Qubit Discovery Starts a Computing EraArgonne News: 2026 Bardeen Prize awarded to Argonne physicist Michael Norman for breakthroughs in understanding complex superconductors.
Read More Argonne News: Michael Norman Wins 2026 John Bardeen PrizeScanning Tunneling Microscopy News: Scientists use STM and graphene to image and control diamond NV qubits at the atomic scale
Read More Scanning Tunneling Microscopy News In Diamond QubitsArgonne’s upgraded Advanced Photon Source beamlines deliver highly coherent X-ray beams, enabling scientists to observe atomic-level materials .
Read More Argonne Advanced Photon Source beamlines for future discoveryIntel and Argonne National Laboratory have successfully implemented an Intel 12 qubit processor based on quantum dots on silicon.
Read More Argonne and Intel 12 Qubit Processor Milestone at Q-NEXTArgonne scientists engineer atomic-scale quantum emitters, enabling precise single-photon control for future quantum computing, communication, and sensing.
Read More Atomic Quantum Emitters discovery using QuEEN-M by ArgonneThe Quantum Foundry at Argonne National Laboratory Creates Optically Active Spin Qubits, Transforming Computing and Sensing Potential
Read More Spin Qubits open new paths in Quantum Networking and sensingLearn Argonne National Laboratory news for npj computational materials shows a magnesium oxide mineral defect may be quantum building block.
Read More The Argonne National Laboratory News For Quantum Material