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  1. An electron (represented by the ball) is controlled by a resonator (red wires) above a solid neon surface (the transparent square piece under the ball). Noise (disturbances) in the environment (represented by the distortion) becomes quiet around the electron and neon (clear area). Image by Xu Han/Argonne National Laboratory.

    Frozen neon as the key to a quiet quantum world, new study shows

    May 21, 2026

  2. Steven Koester, a smiling man wearing a light blue dress shirt and patterned tie, standing indoors in front of a window with a blurred view of modern brick and glass buildings in the background.

    Steven Koester to lead Notre Dame’s Nanoscience and Technology (NDnano) Interdisciplinary Research Center

    April 08, 2025

  3. A man with dark hair and a gentle smile, wearing a dark collared shirt. Blurred green background.

    Jin receives DOE Early Career Award

    September 10, 2024

  4. Abstract illustration of a colorful microchip with glowing blue and green spheres, purple lines, and yellow/red lined details.

    Major milestone achieved in new quantum computing architecture

    October 28, 2023

  5. The image shows a detailed view of a silicon wafer with blue and white microchip circuits (small squares and rectangles) and a small Notre Dame leprechaun logo.

    The Chip Makers

    May 01, 2023

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