Researchers Advance Topological Superconductors for Quantum Computing

As part of the Quantum Science Center headquartered at ORNL, Robert Moore probes the interface between a topological insulator and a superconductor with spin- and angle-resolved photoemission spectroscopy.

Quantum computers process information using quantum bits, or qubits, based on fragile, short-lived quantum mechanical states. To make qubits robust and tailor them for applications, researchers from the Department of Energy’s Oak Ridge National Laboratory sought to create a new material system.

The post Researchers Advance Topological Superconductors for Quantum Computing appeared first on HPCwire.

More Related Posts

Dexai designs Alfred 2.0 for safe food service to help restaurants during pandemic

The system includes areas to hold tools, a kitchen display, a bowl-passing...

What Robots Need to Succeed: Machine-Learning to Teach Effectively

With machine learning, algorithms are automatically generated from large datasets, speeding the...

Director of Engineering

We are seeking a Director of Engineering to help build our technology...

Home

Highly Niched Headhunters Specialized in Physical AI/Robotics, High-Performance Computing, Unmanned/Autonomous Systems, Defense Technology and Energy.

Specializations

We recruit across complex engineering markets where understanding the technology is critical to finding the right talent.

How We Work

Overview of how PACE partners with teams: Our process, what clients get, and why PACE is different.

About Us

PACE’s story, values, and culture define how we operate and who we are.

News & Insights

Stay up to date on industry trends.

Contact

All the information needed for anyone interested in contacting us.