The question addressed during this project was: How does quantum mechanics affect the behaviour of mesoscopic moving objects, and how can we exploit any such effects?
This is important for society because many quantum technologies operate in this regime. Examples include new kinds of microscope that work by measuring tiny forces, and new kinds of amplifier that can detect tiny electrical signals. The question is also interesting from a pure scientific point of view, because the mesoscopic regime is where everyday classical behaviour starts to emerge from the quantum behaviour of individual particles.
To address this question, we have developed new kinds of electromechanical device made from vibrating carbon nanotubes. Our discoveries have included new ways to measure tiny motion using superconducting amplifiers, a new mechanism for exciting this motion due to the tunnelling of individual electrons, and a proposal to create large quantum superpositions by incorporating carbon nanotubes into superconducting qubits.