Physics

Scientists achieve light control in disordered materials, not just crystals

How the science connects

PhotonicsLight scattering

AI Insight

Researchers have developed a theoretical framework that enables directional control of light scattering in disordered materials, allowing suppression of scattering in certain directions while enhancing it in others. This work extends light control capabilities beyond traditional ordered crystal structures to irregular material arrangements, opening new possibilities for manipulating light in non-crystalline systems.


This advancement could enable new optical devices and technologies that don't require perfectly ordered materials, potentially reducing manufacturing costs and complexity. Applications may include improved light management in solar cells, optical communications, and sensing technologies using more readily available disordered materials.


Understand the Science

Photonics 23 articles Explore Concept → Light scattering Concept coming soon

A research team has developed a new theoretical framework that can suppress light scattering in certain directions while enhancing it in others, even in irregularly arranged materials. The work extends research on controlling light scattering, which has traditionally centered on ordered crystal structures, into the realm of disordered systems.

Source: Theoretical framework expands directional light control beyond ordered crystal structures