LATEST NEWS

Researchers at the Forschungszentrum Jülich develop novel process for structuring quantum materials

Already the Incas used knots in cords in their ancient writing “Quipu” to encode and store information. The advantage: Unlike ink on a sheet of paper, the information stored in the knots is robust against external destructive influences such as water. Novel quantum computers should also be able to store information robustly in the form of knots. For this, however, no cord is knotted, but so-called quasiparticles in space and time.

What you need to build such a quantum-knot-machine are new materials, so called quantum materials. Experts speak of topological insulators and superconductors. The processing of these materials into components for quantum computers is a challenge in itself, especially because topological insulators are very air-sensitive.

Scientists at the Forschungszentrum Jülich have now developed a novel process that makes it possible to structure quantum materials without exposing them to air during processing. The so-called “Jülich process” makes it possible to combine superconductors and topological insulators in the ultra-high vacuum and thereby produce complex components.

First measurements in their devices show indications of Majorana states. “Majoranas” are precisely the promising quasiparticles that are to be knotted in the shown networks of topological insulators and superconductors in order to enable robust quantum computing. In a next step, the researchers at the Peter-Grünberg Institute, together with their colleagues from Aachen, the Netherlands and China, will equip their networks with read-out and control electronics in order to make the quantum materials accessible for application.

Lihi

Recent Posts

Island Announces $400 Million Series F, Bringing Valuation to $6.4 Billion

The future of work belongs to people and AI agents. Island built the control plane…

4 days ago

UltraSight Raises $24 Million to Scale Its AI-Guided Cardiac Workflow Platform Across U.S. Health Systems

Financing builds on FDA clearances, growing clinical evidence and commercial traction to advance the UltraSight…

4 days ago

Valens Semiconductor to Collaborate with onsemi on a Cost-Optimized Integrated Sensor Based on the MIPI A-PHY Standard

Collaboration agreement to support the development of MIPI A-PHY solutions targeting high-volume 3MP automotive camera…

5 days ago

Cognex to Acquire RealSense, Expanding Machine Vision Leadership into High-Growth Robotic Perception Market

Cognex Corporation (NASDAQ: CGNX), the global technology leader in industrial machine vision, today announced that…

6 days ago

Jura and SEALSQ Plan Swiss Post-Quantum Semiconductor Centre

The Republic and Canton of Jura has signed a memorandum of understanding with SEALSQ and…

6 days ago

Molex Announces VersaBeam Mini to Advance Ultra-Dense, Eye-Safe Optical Interconnects for Next-Generation AI Data Centers

Delivers 3x density improvement in an ultra-compact form factor, supporting up to 3,456 fibers in…

6 days ago