Our Technology:

We develop technologies that redefine how computation is built, controlled and scaled. Our work spans advanced materials, novel device architectures and emerging concepts inspired by optimal control.

Building the Foundations of Future Computing

Why New Technologies Are Needed

For decades, Moore’s Law drove predictable improvements in computing.
Today, transistor scaling slows down while computing demand accelerates, opening a structural gap that silicon alone cannot close.

The Emerging Gap

Where scaling ends and demand explodes, new computing technologies must emerge.

Moore’s Law is slowing, not disappearing while computing demand continues to accelerate.

We explore next-generation materials and nanostructures that unlock new physical behaviours and higher efficiency.

Emerging Materials

Core Areas

Novel Device Architectures

Optimal Control

We design and prototype new device geometries and operational principles that reimagine performance, efficiency and control.

We investigate advanced control techniques, informed by principles developed in both classical and quantum systems, to enable more precise, efficient and scalable operation.

What This Enables

More powerful and energy-efficient computation
New system capabilities beyond classical scaling
Ultra-low-power embedded and secure electronics
Secure and high-reliability electronics
Pathways towards next-generation computing models

Where limits end, the next paradigm begins.