Imec Presents Fundamentally New Way to Render Colors with Sub-micron Pixel Sizes that Revolutionizes Camera Performance

Grayscale semiconductor microstructure with repeating tapered vertical columns

LEUVEN (Belgium), DECEMBER 11, 2023This week at the 2023 International Electron Devices Meeting (IEEE IEDM 2023), imec, a world-leading research and innovation hub in nanoelectronics and digital technologies, demonstrates a new method for faithfully splitting colors with sub-micron resolution using standard back-end-of-line processing on 300mm wafers. The technology is poised to elevate high-end camera performance, delivering higher signal-to-noise ratio, enhanced color quality with unprecedented spatial resolution.

Designing next-generation CMOS imagers requires striking a balance between collecting all incoming photons, achieving a resolution down to photon size or diffraction limit, and accurately recording the light color. Traditional image sensors with color filters on the pixels are still limited in combining all three requirements. While higher pixel densities would increase the overall image resolution, smaller pixels capture even less light and are prone to artifacts that result from interpolating color values from neighboring pixels. Even though diffraction-based color splitters represent a leap forward in increasing color sensitivity and capturing light, they are still unable to improve image resolution.

Imec now proposes a fundamentally new way for splitting colors at sub-micron pixel sizes (i.e., beyond the fundamental Abbe diffraction limit) using standard back-end processing. The approach ticks all boxes for next-generation imagers by collecting nearly all photons, increasing resolution by utilizing very small pixels, and rendering colors faithfully.  To achieve this, imec researchers built an array of vertical Si3N4 multimode waveguides in an SiO2 matrix. The waveguides have a tapered, diffraction-limited sized input (e.g., 800x800 nm2) to collect all the incident light. “In each waveguide, incident photons are exciting both symmetric and asymmetric modes, which propagate through the waveguide differently, leading to a unique 'beating' pattern between the two modes for a given frequency. This beating pattern enables a spatial separation at the end of the waveguides corresponding to a specific color", explained prof. Jan Genoe, scientific director at imec. The total output light from each waveguide is estimated to reach over 90% within the range of human color perception (wavelength range 400-700nm), making it superior to color filters.

Robert Gehlhaar, principal member of technical staff at imec: “Because this technique is compatible with standard 300-mm processing, the splitters can be produced cost-efficiently. This enables further scaling of high-resolution imagers, with the ultimate goal to detect every incident photon and its properties. Our ambition is to become the future standard for color imaging with diffraction-limited resolution. We are welcoming industry partners to join us on this path towards full camera demonstration.”

3D waveguide array diagram beside a TEM cross-section labeled with material layers and 1 µm scale bar
3D visualization (left) and TEM cross-section (right) of the vertical waveguide array for color splitting in BY-CR imaging.
Microscope view and diagram of waveguides showing alternating left- and right-side openings with colored light patterns.
RGB camera measurement (100x magnification) of an array of waveguides with alternating 5 left-side-open-aperture and 5 right-side open-aperture (the others being occluded by TiN) waveguides at a 1-micron pitch. Yellow light exits at the right part of the waveguide, whereas the blue exits at the left. The wafer is illuminated using plane wave white light.

About imec

Imec is a world-leading research and innovation center in nanoelectronics and digital technologies. Imec leverages its state-of-the-art R&D infrastructure and its team of more than 5,500 employees and top researchers, for R&D in advanced semiconductor and system scaling, silicon photonics, artificial intelligence, beyond 5G communications and sensing technologies, and in application domains such as health and life sciences, mobility, industry 4.0, agrofood, smart cities, sustainable energy, education, … Imec unites world-industry leaders across the semiconductor value chain, Flanders-based and international tech, pharma, medical and ICT companies, start-ups, and academia and knowledge centers. Imec is headquartered in Leuven (Belgium), and has research sites across Belgium, in the Netherlands and the USA, and representation in 3 continents. In 2022, imec's revenue (P&L) totaled 846 million euro.

Further information on imec can be found at www.imec-int.com.

Imec is a registered trademark for the activities of imec International (IMEC International, a legal entity set up under Belgian law as a “stichting van openbaar nut”), imec Belgium (IMEC vzw supported by the Flemish Government), imec the Netherlands (Stichting IMEC Nederland),  imec Taiwan (IMEC Taiwan Co.), imec China (IMEC Microelectronics (Shanghai) Co. Ltd.), imec India (IMEC India Private Limited), imec San Francisco (IMEC Inc.) and imec Florida (IMEC USA Nanoelectronics Design Center Inc.).

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