ʵ

News

What do we see in a mirror? New metasurfaces look “bright” at one direction, while “dark” for the opposite direction

Researchers at Aalto University developed metasurfaces with extreme angle-asymmetric response. The new device can be a good or bad reflector depending on the angle the light hits it.
Metamirrors show different things to different observers

When we look at a mirror from an angle, we see the image of the object located at the opposite direction. This is because the scattering light of the object is reflected by the mirror and then perceived by observers’ eyes. This process, known as specular reflection, is angle-symmetric: if the person stands on the left side of mirror can see the right person, then the right person can always see the left one with the same clearness. Conventional mirrors always have symmetric responses for light coming from both sides of the mirrors. Recently, researchers at Aalto University have successfully broken the angle-symmetric response of a mirror using the concept of gradient metasurfaces. The artificially synthesized surfaces can be designed to look “bright” at one direction, while “dark” for the observer at the opposite direction. 

Metasurfaces are planar artificial materials, composed of periodic arranged meta-atoms at subwavelength scale. Meta-atoms are made of traditional materials but, if they are placed in a repeating patterns, the array can show many unusual effects which cannot be realized by the natural materials.. In their article  published in Physical Review Letters, the team from Aalto use gradient metasurfaces to engineer the contrast ratio of brightness for waves coming from two oppositely tilted angles.

“Our findings provide the first demonstration that a flat surface can realize extreme optical asymmetry in angle spectrum. This is an important milestone in both physics and engineering communities,” says Xuchen Wang, who is currently a third-year doctoral student in Aalto University, and also the responsible person of this work. Xuchen studies electromagnetic metasurfaces under the supervision of Prof. Sergei Tretyakov.

The article was published i. The study has received funding from the Academy of Finland.

For further information please contatct Xuchen Wang

Email: Xuchen.wang@aalto.fi
Phone: +358-503097794
Institution: Department of Electronics and Nanoengineering, Aalto University
Address: Maarintie 8, 02150 Espoo, Finland

  • Updated:
  • Published:
Share
URL copied!

Read more news

A person stands on glowing red steps with text promoting Ignite program for summer 2026. 'Take your first step' is written.
Studies Published:

Stop applying for jobs and build your own startup instead at Ignite

Applications for the Ignite summer accelerator program 2026 are open. Apply by March 8.
Research & Art Published:

Soil Laboratory Exhibition – Exploring the Dialogue Between Human and the Earth in Utsjoki

Soil Laboratory explores the relationship between humans and the earth as a living landscape through ceramic practices in Utsjoki.
Three people walking in winter next to a sign that says 'Aalto University' with snow-covered trees and buildings in the background.
Research & Art Published:

The Finnish Cultural Foundation awarded grants for science and art

A total of 15 individuals or groups from Aalto University received grants
Aerial view of a tram on a curved track surrounded by trees and buildings in a cityscape on a sunny day.
Awards and Recognition, Cooperation, Research & Art Published:

Environmental Structure of the Year 2025 Award goes to Kalasatama-Pasila tramway

The award is given in recognition of meritorious design and implementation of the built environment. Experts from Aalto University developed sustainability solutions for the project.