Self-healing, light-emitting fibre paves way for smarter textiles and robotics
An innovative fibre with a range of exceptional features, including the ability to emit light, self-repair when damaged, and respond to...
AI | BUSINESS | CHEMISTRY | COMPUTING | ELECTRONICS | ENERGY | ENGINEERING | LIFE SCIENCE | MATERIAL SCIENCE | METROLOGY | PHOTONICS | PHYSICS | QUANTUM TECH | ROBOTICS | SEMICONDUCTOR
Aachen, Germany
Singapore
Melbourne VIC, Australia
Santa Clara, CA, USA
Lisbon, Portugal
Ho Chi Minh City, Vietnam
Quantum materials through the nano-lens: surprises beyond the diffraction limit
Explore how nano-spectroscopy is reshaping the study of quantum materials. In this on-demand session, Prof. Alexander McLeod presents cutting-edge research using nano-scale optical probes to examine phenomena like collective excitations in 2D materials and phase competition in correlated electron systems. This session highlights the integration of optical nano-probes with traditional optics, breaking free from the diffraction limit to enable unprecedented spatial and temperature resolution.
On demand
Online