# Maryland team maps IR-driven surface motion with torsional force microscopy in Nature Communications

_Friday, August 7, 2026 at 6:00 PM EDT · Science · Latest · Tier 2 — Notable_

![Maryland team maps IR-driven surface motion with torsional force microscopy in Nature Communications — Primary](https://scx2.b-cdn.net/gfx/news/2026/researchers-unlock-hig.jpg)

University of Maryland researchers describe infrared torsional force microscopy, or TFM-IR, a method that images how a surface stretches and warps under infrared light with near-nanometer precision, phys.org reported on a Nature Communications paper.

Physics professor Min Ouyang and graduate student Yonatan Gazit combined atomic force microscopy with a tip that twists back and forth while infrared laser pulses heat the sample. By choosing pulse rates, the tip can pick out vertical or horizontal motion, overcoming a limit of conventional tapping AFM that mainly senses height. The credit line lists DOI 10.1038/s41467-026-74654-0.

As a demonstration on mica, the team detected four vibration patterns and mapped horizontal and vertical responses across a few-nanometer mica nanobubble, matching simulations of strain in the bump. The approach aims at quantum materials whose properties vary over nanometer distances that ordinary optical microscopes cannot resolve.

## Sources

- [phys.org](https://phys.org/news/2026-08-high-res-view-2d-materials.html)
- [Nature Communications](https://doi.org/10.1038/s41467-026-74654-0)

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Retrieved: 2026-08-09T18:52:55.801Z
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