Lasers Align Electron Spin Behavior in Quantum Materials
Researchers have discovered a news way to control the quantum behavior of semiconductor materials with laser light. The discovery could lead to a new kind of quantum material.
Dr. Joseph Williams on Quantum in Space
Dr. Joseph Williams explained the importance of quantum technologies in space at the University of Washington.
Natural Radiation Can Interfere with Quantum Computers
Radiation from natural sources in the environment can limit the performance of superconducting quantum bits, known as qubits. The discovery has implications for quantum computing and for the search for dark matter.
Increasing the Accuracy of Quantum Algorithms
PNNL researchers utilized the Peeters-Devreese-Soldatov formulation to improve the accuracy of calculations for quantum chemistry.
Reviewing A Hybrid Computing Approach for Quantum Chemistry
A hybrid computing approach for solving quantum chemical problems offers a practical bridge between classical and quantum computing.
Dr. Joseph Williams Elected as Vice Chair of Q4NS
Williams brings his deep understanding of the technology industry and PNNL’s quantum and national security expertise to this Technical Advisory Committee.
Hunting for Dark Matter Axions
The search for dark matter includes expertise in radio frequency signal detection, quantum sensing, and high-energy physics at PNNL.
Polaritonic Chemistry with the Density Matrix Renormalization Group Method
Pacific Northwest National Laboratory researchers developed a new theoretical method for studying highly correlated systems.
Bylaska Selected for Computational Materials Science Award
Bylaska and team will aim to make computational design of functional materials more targeted, impactful, and user friendly through this award.
Computational Chemistry Needs To Be Sustainable, Too
As new paradigms in advanced computing take shape, computational chemistry researchers are finding new ways to solve challenging chemistry problems.