Researchers have developed a new technology with the smallest pixels ever in a screen with the highest resolution possible for the human eye to perceive. The technology has the potential to expand creative possibilities, improve remote collaboration, and even accelerate scientific research.
The pixels reproduce colors using nanoparticles whose dimensions and arrangement control how light is scattered, and whose optical properties can be electrically tuned.
(Source: Chalmers University of Technology, Mia Halleröd Palmgren)
Chalmers/Sweden – In an article in the science journal Nature, researchers from Chalmers University of Technology, the University of Gothenburg and Uppsala University, Sweden, present a technology with the smallest pixels ever, in a screen with the highest resolution possible for the human eye to perceive. The pixels reproduce colors using nanoparticles whose dimensions and arrangement control how light is scattered, and whose optical properties can be electrically tuned. This breakthrough paves the way for the creation of virtual worlds that are visually indistinguishable from reality.
As the transfer of information in our society becomes more complex, the demand increases for screens that transmit images and video with precision.
“The technology that we have developed can provide new ways to interact with information and the world around us. It could expand creative possibilities, improve remote collaboration, and even accelerate scientific research,” says Kunli Xiong, Associate Senior Lecturer/Assistant Professor at the Department of Materials Science and Engineering at Uppsala University, who conceived the project and is the lead author of the study.
It is the size and number of pixels that determine the resolution, and thereby how realistic images and films displayed on screens can be. In virtual or augmented reality, where the screen is small and close to the eye, the experience is limited by the fact that today’s pixels cannot be made small enough. On a micro-LED screen, for example, pixels work poorly when they become smaller than one micrometre in size. However, in the article Video‐rate tunable color electronic paper with human resolution published in the scientific journal Nature, researchers present retina E-paper, a new type of electronic paper, or reflective screen. Each pixel is approximately 560 nanometres and the overall screen area is comparable to the size of the human pupil, with a resolution of beyond 25,000 ppi (pixles per inch).
“This means that each pixel roughly corresponds to a single photoreceptor in the eye, i.e. the nerve cells in the retina that convert light into biological signals. Humans cannot perceive a higher resolution than this,” says Andreas Dahlin, Professor at the Department of Chemistry and Chemical Engineering at Chalmers.
The retina E-paper can be placed very close to the eye. To demonstrate the technology's performance, researchers recreated an image of Gustav Klimt’s famous artwork ‘The Kiss’ on a surface area of approximately 1.4 × 1.9 millimetres. By way of comparison, this means that the image was 1/4000th that of a standard smartphone.
As in previous research led by Andreas Dahlin, the screen is passive, meaning that it does not contain its own light source; instead, the colors of the pixels appear when ambient light hits small structures on a surface. The same principle can be found in the magnificent plumage of small birds. The ultrasmall pixels contain particles of tungsten oxide. By adjusting the size of the particles and how they are positioned in relation to one another, the researchers have succeeded in controlling how the colors in light are diffused and reflected, thereby creating pixels in the colors red, green and blue, which can then be used to generate all colors. By applying a weak voltage, the particles can be ‘switched off’ and they will turn black.
“This is a major step forward in the development of screens that can be shrunk to miniature size while improving quality and reducing energy consumption. The technology needs to be fine-tuned further, but we believe that retina E-paper will play a major role in its field and will eventually have impact on us all,” says Giovanni Volpe, Professor at the Department of Physics at the University of Gothenburg.
Date: 08.12.2025
Naturally, we always handle your personal data responsibly. Any personal data we receive from you is processed in accordance with applicable data protection legislation. For detailed information please see our privacy policy.
Consent to the use of data for promotional purposes
I hereby consent to Vogel Communications Group GmbH & Co. KG, Max-Planck-Str. 7-9, 97082 Würzburg including any affiliated companies according to §§ 15 et seq. AktG (hereafter: Vogel Communications Group) using my e-mail address to send editorial newsletters. A list of all affiliated companies can be found here
Newsletter content may include all products and services of any companies mentioned above, including for example specialist journals and books, events and fairs as well as event-related products and services, print and digital media offers and services such as additional (editorial) newsletters, raffles, lead campaigns, market research both online and offline, specialist webportals and e-learning offers. In case my personal telephone number has also been collected, it may be used for offers of aforementioned products, for services of the companies mentioned above, and market research purposes.
Additionally, my consent also includes the processing of my email address and telephone number for data matching for marketing purposes with select advertising partners such as LinkedIn, Google, and Meta. For this, Vogel Communications Group may transmit said data in hashed form to the advertising partners who then use said data to determine whether I am also a member of the mentioned advertising partner portals. Vogel Communications Group uses this feature for the purposes of re-targeting (up-selling, cross-selling, and customer loyalty), generating so-called look-alike audiences for acquisition of new customers, and as basis for exclusion for on-going advertising campaigns. Further information can be found in section “data matching for marketing purposes”.
In case I access protected data on Internet portals of Vogel Communications Group including any affiliated companies according to §§ 15 et seq. AktG, I need to provide further data in order to register for the access to such content. In return for this free access to editorial content, my data may be used in accordance with this consent for the purposes stated here. This does not apply to data matching for marketing purposes.
Right of revocation
I understand that I can revoke my consent at will. My revocation does not change the lawfulness of data processing that was conducted based on my consent leading up to my revocation. One option to declare my revocation is to use the contact form found at https://contact.vogel.de. In case I no longer wish to receive certain newsletters, I have subscribed to, I can also click on the unsubscribe link included at the end of a newsletter. Further information regarding my right of revocation and the implementation of it as well as the consequences of my revocation can be found in the data protection declaration, section editorial newsletter.